Circular saw dust collection shroud

Information

  • Patent Grant
  • 11273505
  • Patent Number
    11,273,505
  • Date Filed
    Wednesday, March 25, 2020
    4 years ago
  • Date Issued
    Tuesday, March 15, 2022
    2 years ago
Abstract
A circular saw dust collection shroud is provided. The dust collection shroud includes a shroud body and a saw blade hood which is disposed around a circular saw blade. The saw blade hood may engage the upper blade guard of the circular saw. The dust collection shroud is reconfigurable to mount to either a left or a right handed circular saw and is adjustable relative to the saw to position the saw blade hood in a desired location around the saw blade.
Description
THE FIELD OF THE INVENTION

The present invention relates to dust collection. In particular, examples of the present invention relates to a dust collection shroud for collecting dust during use of a circular saw.


BACKGROUND

Dust collection has become increasingly important both for commercial use and construction as well as for consumer or hobbyist use of power tools. Without adequate dust collection while working, dust and debris is typically scattered over a wide area. It is desirable to contain the dust and debris which is created while using power tools for several reasons. It is desirable to contain the dust and debris to keep the workplace cleaner and to minimize the time necessary to clean up afterwards. For example, circular saws are often used to cut wood, plastics, or masonry products. Cutting these materials creates fine dust which is spread over a large distance and which can be difficult and time consuming to clean up afterwards. It is also desirable to contain the dust and debris to keep the debris from getting into the tool itself, as the fine dust often causes premature failure of the tool bearings, motor, etc. Additionally, dust poses a health risk to the machine operator and others who may breathe it. It is thus desirable to collect the dust to minimize exposure to the dust.





BRIEF DESCRIPTION OF THE DRAWINGS

Non-limiting and non-exhaustive examples of the present invention are described with reference to the following figures, wherein like reference numerals refer to like parts throughout the various views unless otherwise specified.



FIG. 1 is a drawing which shows an isometric view of the dust shroud.



FIG. 2A is a drawing which shows an isometric view of the dust shroud mounted to a circular saw.



FIG. 2B is a drawing which shows an isometric view of the dust shroud mounted to a circular saw.



FIG. 2C is a drawing which shows an isometric view of the dust shroud mounted to a circular saw.



FIG. 3 is a drawing which shows an isometric view of the shroud body.



FIG. 4 is a drawing which shows an isometric view of the shroud body.



FIG. 5 is a drawing which shows an isometric view of the saw blade hood.



FIG. 6 is a drawing which shows an isometric view of the mounting bar and bolt.



FIG. 7 is a drawing which shows a side view of the dust shroud.



FIG. 8 is a drawing which shows a side view of the dust shroud.



FIG. 9 is a drawing which shows a front view of the dust shroud.



FIG. 10 is a drawing which shows a rear view of the dust shroud.



FIG. 11 is a drawing which shows a top view of the dust shroud.



FIG. 12 is a drawing which shows a bottom view of the dust shroud.



FIG. 13 is a drawing which shows a perspective view of the dust shroud.



FIG. 14 is a drawing which shows a perspective view of the dust shroud attached to a circular saw.



FIG. 15 is a drawing which shows a side view of the dust shroud attached to the circular saw.



FIG. 16 is a drawing which shows a perspective view of the dust shroud and the circular saw blade.



FIG. 17 is a drawing which shows a perspective view of the dust shroud.



FIG. 18 is a drawing which shows a perspective view of the dust shroud.



FIG. 19 is a drawing which shows a perspective view of the dust shroud.



FIG. 20 is a drawing which shows a perspective view of the dust shroud.



FIG. 21 is a drawing which shows a perspective view of the dust shroud.



FIG. 22 is a drawing which shows a left side view of the dust shroud.



FIG. 23 is a drawing which shows a right side view of the dust shroud.



FIG. 24 is a drawing which shows a top view of the dust shroud.



FIG. 25 is a drawing which shows a bottom view of the dust shroud



FIG. 26 is a drawing which shows a front view of the dust shroud.



FIG. 27 is a drawing which shows a back view of the dust shroud.



FIG. 28 is a drawing which shows a perspective view of the dust shroud.



FIG. 29 is a drawing which shows a perspective view of the dust shroud.





Corresponding reference characters indicate corresponding components throughout the several views of the drawings. Unless otherwise noted, the drawings have been drawn to scale. Skilled artisans will appreciate that elements in the figures are illustrated for simplicity and clarity. For example, the dimensions of some of the elements in the figures may be exaggerated relative to other elements to help improve understanding of various examples of the present invention. Also, common but well-understood elements that are useful or necessary in a commercially feasible embodiment are often not depicted in order to facilitate a less obstructed view of these various embodiments of the present invention.


It will be appreciated that the drawings are illustrative and not limiting of the scope of the invention which is defined by the appended claims. The examples shown each accomplish various different advantages. It is appreciated that it is not possible to clearly show each element or advantage in a single figure, and as such, multiple figures are presented to separately illustrate the various details of the examples in greater clarity. Similarly, not every example need accomplish all advantages of the present disclosure.


DETAILED DESCRIPTION

In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. It will be apparent, however, to one having ordinary skill in the art that the specific detail need not be employed to practice the present invention. In other instances, well-known materials or methods have not been described in detail in order to avoid obscuring the present invention.


In the above disclosure, reference has been made to the accompanying drawings, which form a part hereof, and in which are shown by way of illustration specific implementations in which the disclosure may be practiced. It is understood that other implementations may be utilized and structural changes may be made without departing from the scope of the present disclosure. References in the specification to “one embodiment,” “an embodiment,” “an example embodiment,” etc., indicate that the embodiment described may include a particular feature, structure, or characteristic, but every embodiment may not necessarily include the particular feature, structure, or characteristic. Moreover, such phrases are not necessarily referring to the same embodiment. Further, when a particular feature, structure, or characteristic is described in connection with an embodiment, such feature, structure, or characteristic may be used in connection with other embodiments whether or not explicitly described. The particular features, structures or characteristics may be combined in any suitable combination and/or sub-combinations in one or more embodiments or examples. It is appreciated that the figures provided herewith are for explanation purposes to persons ordinarily skilled in the art.


As used herein, “adjacent” refers to near or close sufficient to achieve a desired effect. Although direct contact is common, adjacent can broadly allow for spaced apart features.


As used herein, the singular forms “a,” and, “the” include plural referents unless the context clearly dictates otherwise.


As used herein, the term “substantially” refers to the complete or nearly complete extent or degree of an action, characteristic, property, state, structure, item, or result. For example, an object that is “substantially” enclosed would mean that the object is either completely enclosed or nearly completely enclosed. The exact allowable degree of deviation from absolute completeness may in some cases depend on the specific context. However, generally speaking the nearness of completion will be such as to have the same overall result as if absolute and total completion were obtained. The use of “substantially” is equally applicable when used in a negative connotation to refer to the complete or near complete lack of an action, characteristic, property, state, structure, item, or result. For example, a composition that is “substantially free of” particles would either completely lack particles, or so nearly completely lack particles that the effect would be the same as if it completely lacked particles. In other words, a composition that is “substantially free of” an ingredient or element may still actually contain such item as long as there is no measurable effect thereof.


As used herein, the term “about” is used to provide flexibility to a number or numerical range endpoint by providing that a given value may be “a little above” or “a little below” the number or endpoint.


The disclosure particularly describes a dust collection shroud for a circular saw. Particularly, the present disclosure describes a dust collection shroud which may be universally adapted to fit many different circular saws. The dust collection shroud attaches to or adjacent to the base of the circular saw and provides a dust collection chamber which extends around the front of the circular saw blade within the blade guard. The dust collection shroud may be attached to both left and right handed saws. The shroud includes a hood which extends around the saw blade. The hood forms much of the dust collection chamber around the blade. In some cases, the hood may be trimmed to better fit individual saws. The dust collection chamber collects dust at the dust creation point of the saw. A majority of the dust is collected before it escapes the saw or migrates to other areas. A vacuum hose port and a vacuum hose are used to connect the dust collection shroud to a vacuum and draw air from around the front of the blade and from the dust collection chamber.


Referring now to FIG. 1, an isometric drawing of the dust collection shroud 10 is shown. The shroud 10 includes a shroud body 14, a saw blade hood 18, a mounting bar 22, a bolt 26, and a thumb nut 30. The shroud body 14 includes a vacuum port 34 which extends upwardly from a base of the shroud body 14 and generally outwardly from the shroud body 14. This orientation may be varied somewhat. The vacuum port 34 provides an opening which receives a standard 1.25 or 1.5 inch vacuum hose to thereby connect the dust collection shroud 10 to a vacuum such as a shop canister vacuum. In some applications, the vacuum port 34 may include an extended hose which extends further upwardly from the dust collection shroud 10 and provides an opening to receive the vacuum hose. The lumen of the vacuum port 34 is pneumatically connected to a dust collection chamber/passage 38 which is formed by the shroud body 14. The dust collection chamber 38 receives dust from the circular saw and transmits the dust through the vacuum port to be collected by a vacuum.


The dust collection chamber 38 includes an opening, indicated at 42, which interfaces with the saw blade hood 18. The saw blade hood 18 attaches to the shroud body 14 and extends around the circular saw blade. Accordingly, the saw blade hood 18 forms a portion of the dust collection chamber 38. The shroud body 14 also includes a mounting flange 46 which extends generally horizontally from the shroud body 14. The mounting flange 46 is used to attach the dust collection shroud 10 to a circular saw via the rip slot on the circular saw. The mounting flange 46 is designed to allow for left or right mounting of the dust collection shroud 10 to a left or right handed circular saw. This increases the ability to mount a single dust collection shroud 10 to many different circular saws. Accordingly, the mounting flange includes mirrored mounting portions 50 which extend both forwards and backwards from the center of the shroud body 14.


A single mounting portion 50 is generally used to attach the dust collection shroud 10 to a circular saw. Each mounting portion 50 includes a slot 54 which can receive a mounting bar 22. The mounting bar 22 is an elongate rectangular bar with an upturned end; forming an “L” shape. The upturned end of the mounting bar 22 includes a hole which receives the mounting bolt 26. Each mounting portion 50 of the shroud body mounting flange 46 has a bolt slot 58 formed therethrough which also receives the mounting bolt 26. As the bolt slot 58 intersects the mounting bar slot 54, the bolt slot 58 is formed with a rear bolt slot portion 58A and a front bolt slot portion 58B. The rear bolt slot portion 58A is formed with square ends to receive the squared shoulder of a carriage bolt. The front bolt slot portion 58B is formed with rounded ends to receive the carriage bolt shank. The upturned “L” shaped end of the mounting bar 22 is placed into the mounting bar slot 54 and the mounting carriage bolt 26 is passed through the rear bolt slot 58A, the bolt hole in the mounting bar 22, and through the front bolt slot 58B. The thumb nut 30 is then secured on the threaded end of the bolt 26 to fix the mounting bar 22 in a desired position on the mounting flange 46. The dust collection shroud 10 is shown ready for attachment to a right handed circular saw. Generally, the dust collection shroud 10 may be attached to a left handed circular saw with the mounting bar 22 attached to the other mounting portion 50 of the mounting flange 46.


The saw blade hood 18 is also made for use with a left or right handed circular saw. The saw blade hood 18 includes a central opening 62 which attaches to the shroud body 14 and includes upper and lower portions 64 which define an open channel 66 for the saw blade. The example upper and lower portions 64 are symmetrical and they extend upwardly and downwardly from the opening 62. The assembly shown is configured for a right handed circular saw. For use on a left handed saw, the saw blade hood 18 would be inverted to place the central opening on the opposite side of the hood 18 and the shroud body 14 would be rotated 180 degrees about a vertical axis. The mounting bar would be attached to the other mounting portion 50.


The upwardly extending end of the saw blade hood 64 will extend into the blade guard of the circular saw. The downwardly extending end 64 of the saw blade hood 66 will extend downwardly past the bottom of the saw base plate. The saw blade hood 18 includes molded-in cut lines 70 on both upper/lower ends 64 of the blade hood 18 which guide a user in cutting off the excess downwardly extending portion of the saw blade end 64 while initially installing the dust collection shroud on a circular saw. The saw blade hood end portions 64 are formed with a blade slot 74 that extends vertically along the rear of the blade channel 66. The saw blade hood end portions 64 are also formed with a compression/flexibility slot 78 along the front side of the upwardly and downwardly extending ends 64 of the hood 18. This compression slot 78 helps the upwardly extending end 64 of the hood 18 to conform to the saw blade shroud. The saw blade hood 18 is molded from a flexible material which is still somewhat rigid to allow conformation to the saw blade guard. The saw blade hood 18 may be molded from a clear plastic material, such as clear vinyl, to improve visibility of the saw blade when the circular saw is in use. Similarly, the shroud body 14 may be molded from a clear plastic such as acrylic or polycarbonate to further increase the visibility of the saw blade.



FIG. 2A shows a drawing of the dust collection shroud 10 attached to a circular saw 82. The circular saw 82 includes a base plate 86 which contacts a material being cut by the saw. The saw 82 also includes a motor 90, hand grip 94, upper blade guard 98, lower movable blade guard 102, and blade 106. Other parts of the circular saw 82 which do not directly interface with the dust collection shroud 10 are not individually numbered. The saw base plate 86 includes mounting bosses 110 which may be used to attach a rip fence to the saw 82. Circular saws 82 often have similarly situated mounting bosses 110 for using a rip cutting guide. Depending on the particular circular saw 82, the mounting bosses 110 may be channels, brackets, or openings which are used to receive the mounting bar 22. The rip fence is not commonly used and is not used while the dust collection shroud 10 is used. The mounting bosses 110 extend upwardly from the base plate 86 and form openings oriented laterally across the saw base plate 86. The dust shroud mounting bar 22 is placed through the mounting bosses 110 and a screw, such as thumb screw 114, is used to secure the mounting bar 22 to the saw base plate 86.


The mounting bar 22 is moveable laterally in the mounting bosses 110; allowing the lateral position of the dust collection shroud 10 to be adjusted to properly position the saw blade hood 18 in the upper blade guard 98 and around the saw blade 106. Additionally, the shroud body 14 is movable forwards and backwards relative to the mounting bar 22 via the slot 54, bolt slots 58, bolt 26, and nut 30 in order to properly position the shroud 10 relative to the front of the blade 106 and the upper blade guard 98. As shown, the downwardly extending portion of the blade channel 66 has been cut so that it does not extend down below the base plate 86 and the upwardly extending portion of the blade channel 66 is positioned inside of the upper blade guard 98. The shroud body 14 is formed with a straight vertical outer edge 118 along the outside of the mounting flange 46. This straight outer edge 118 may be used as a cutting guide by positioning the outer edge 118 against a fence which has been clamped to a material for cutting along a line in that material.


When the dust collection shroud is installed on a circular saw as shown in FIG. 2, the dust collection chamber 38 is positioned adjacent the front of the saw blade 106 and adjacent the saw base plate 86. This positions the dust collection chamber 38 adjacent the point where dust is generated while cutting. The saw blade hood 18 extends around the front of the saw blade 106 and is positioned close to the front of the upper blade guard 98. The dust collection shroud 10 both collects a majority of dust near the point of dust generation and keeps dust contained within the saw upper blade guard 98; reducing the amount of dust which is spread into the environment during use of the circular saw 82.



FIG. 2B shows how a vacuum hose 32 (dashed lines) may be attached to the dust collection shroud 10 to collect the dust produced while using the circular saw 82. Similarly, FIG. 2C shows how a vacuum hose adapter 36 (dashed lines) may be used to connect a vacuum hose 32 (dashed lines) to the dust collection shroud 10. The vacuum hose adapter 36 may be used to connect a different diameter of vacuum hose 32 or to provide a more rigid section of the vacuum conduit adjacent to the saw body if this makes it easier to use the circular saw 82.



FIGS. 3 and 4 show drawings of the shroud body 14. FIG. 3 shows an isometric view of the shroud body 14 from the position shown in FIGS. 1 and 2. FIG. 4 shows a view of the shroud body 14 from the opposite side to better illustrate the interior of the dust collection chamber 38. FIG. 4 better illustrates how the vacuum port 34 is connected to the dust collection chamber. The vacuum port 34 may include external ribs that may serve to strengthen the vacuum port or to allow attachment of an intermediate hose between the vacuum port 34 and the vacuum hose. The external ribs may allow the vacuum port to accept an adapter for a 1.5 inch vacuum hose, or to alternately receive a 1.5 inch vacuum hose directly. The external ribs may be sized so that a 1.5 inch vacuum hose fits snugly over the ribs. A lower rib may be larger and provide a depth stop which keeps a 1.5 inch vacuum hose from sliding too far over the vacuum port 34. The vacuum port 34 generally extends upwardly from a base of the shroud body 14 and generally outwardly from the shroud body 14 away from the saw blade 106. This orientation is generally suitable for connection to a vacuum hose while preserving ease of operation for the circular saw 82. The dust collection chamber 38 extends generally inwardly from the shroud body towards the saw blade 106 and is connected to the vacuum port 34 so that a continuous pneumatic conduit is formed to transport dust from the dust collection chamber 38, through the vacuum port 34, and into a vacuum hose. In the example shroud body 14, the opening 42 of the dust collection chamber 38 at the inward side is rectangular in shape and the pneumatic conduit between the opening of the vacuum port 34 and the opening 42 of the dust collection chamber transitions between a round opening to a rectangular opening. The rectangular opening 42 of the dust collection chamber 38 helps to align the saw blade hood 18 and prevent rotation of the saw blade hood 18.


A saw blade hood mounting flange 122 corresponding to the dust collection chamber 38 is formed around the opening 42. The mounting flange 122 accepts the saw blade hood 18 and attaches the saw blade hood 18 to the shroud body 14. The mounting flange 122 includes a wall 126 which functions as a depth stop for the saw blade hood 18. The mounting flange 122 also includes two ramp shaped retaining tabs 130 which engage corresponding shaped and positioned recesses/openings in the saw blade hood 18. The saw blade hood 18 is held in position by the wall 126 and retaining tabs 130 and is held securely relative to the shroud body 14 in a desired position relative to the circular saw blade 106.


The saw mounting flange 46 extends generally horizontally from the shroud body 14 a sufficient distance to allow some forwards and backwards positioning of the dust collection shroud 10 relative to the circular saw 82. Each of the mirrored mounting portions 50 extends either forwards or backwards from the center of the shroud body 14 and one of these mounting portions 50 may be used to mount the dust collection shroud to a circular saw, depending on the saw configuration; e.g. left or right handed.


A single mounting portion 50 is generally used to attach the dust collection shroud 10 to a circular saw via the mounting bar 22. The slot 54 extends vertically through the mounting portion 50 since the corresponding end of the mounting bar 22 is bent upwardly in an “L” shape. If the mating end of the mounting bar 22 was left flat, the slot 54 may be omitted and the bolt slot 58 may be oriented vertically through a bottom flange of the mounting portion 50. The example configuration, however, fixes the shroud body 10 in rotation about a horizontal plane as the end of the mounting bar 22 is held against the sides of the slot 54. FIG. 4 shows how the rear bolt slot portion 58A of the bolt slot 58 is formed with square ends to receive the squared shoulder of a carriage bolt. Alternatively, the rear bolt slot portion 58A may be formed with rounded ends and the slot may be longer so that the bolt shoulder does not contact the slot ends.



FIG. 5 shows the saw blade hood 18. The central opening 62 is defined by a peripheral wall 134 which is sized and shaped so that the opening 62 fits closely over the mounting flange 122 on the shroud body 14. The outward face of the peripheral wall 134 contacts the shroud body wall 126 when installed. The hood peripheral wall 134 may be formed with recesses 138 which receive the retaining tabs 130 and keep the saw blade hood 18 attached to the shroud body 14. When installed, the opening 62 extends the pneumatic conduit through the shroud body 14 and also extends the dust collection chamber.


The upper and lower portions 64 of the saw blade hood 18 define an open channel 66 which receives a portion of the saw blade 106. The blade channel 66 extends both upwardly and downwardly from the opening 62 and extends vertically through the hood 18. The saw blade hood 18 defines an internal pneumatic conduit which is “T” shaped when accounting for the opening 62 and the blade channel 66. The lower end of the blade channel 66 is largely blocked off by the material being cut by the saw 82 and the upper end of the blade channel 66 is nested inside of the upper blade guard 98. The outer side of the hood ends 64 (the side opposite the inlet opening 62) has a rounded wall extending vertically across that face coupled with a flat wall in order to better interface with the circular saw upper blade guard 98. The compression slots 78 also help the upwardly extending end 64 of the hood 18 to conform to the saw blade guard 98.



FIG. 5 better illustrates the molded in cut lines 70 which are provided to assist a user in cutting off the excess portion of the downwardly extending end 64 of the saw blade hood 18. Several different parallel cut lines 70 are provided on both ends 64 of the blade hood 18. These are generally perpendicular to the saw blade hood 18 so that they are parallel to the base 86 of the circular saw 82.


The saw blade channel 66 extends vertically through the hood 18 and is open to the rear side of the saw blade hood 18 via a blade slot 74. The blade slot 74 is sized to closely fit a saw blade (e.g. approximately 0.25 inches wide) and allow the saw blade 106 to extend into the blade channel 66. If a saw blade 106 is slightly misaligned with the blade slot 74, it will cut and enlarge the blade slot 74 during use of the saw 82.


When the saw blade hood 18 is attached to the shroud body 14, the ends 64 of the hood 18 are oriented along a vertical axis. The mounting flange 46 is oriented generally along a horizontal axis which is parallel to the saw blade 106 (when the shroud 10 is installed). The vacuum port is oriented generally vertically and somewhat away from the saw blade 106.



FIG. 6 shows the mounting bar 22 and mounting bolt 26. The mounting bar 22 has a width and thickness which are compatible with the mounting bosses 110 on the saw base plate 86. The flat, horizontal part of the mounting bar 22 is sufficiently long to extend through the mounting bosses 110 and also provide for lateral adjustment of the position of the dust collection shroud 10 relative to the circular saw 82. The end 142 of the mounting bar 22 which is attached to the shroud body 14 is upturned at a 90 degree angle and has a hole 146 formed therethrough. The hole is sized to receive the mounting bolt 26. The use of a carriage bolt 26 and thumb nut 30 (FIG. 1) eliminates the need for tools in securing the mounting bar 22 to the shroud body 14.



FIG. 7 shows a side view of the dust collection shroud 10 as it would be seen looking towards the outboard side of the saw blade 106. The vacuum port 34 is neither leaning forwards or backwards relative to the circular saw 82. This provides for a position which is equally suited for mounting to a left or a right handed circular saw 82. FIG. 8 shows a side view of the dust collection shroud 10 as it would be seen looking towards the inboard side of the saw blade 106.



FIG. 9 shows a front view of the dust collection shroud 10. FIG. 9 illustrates how the vacuum port 34 is angled away from the saw blade hood 18 and the saw blade 106. This positions the vacuum hose in a position where it does not interfere with the use of the circular saw 82. FIG. 9 also illustrates how the upturned end 142 of the mounting bar fits snugly into the slot 54 in the mounting portion 50 of the shroud body 14. The mounting bolt 26 and thumb nut 30 compress the mounting flange 46 against the mounting bar end 142. The compression slots 78 are also visible. The compression slots 78 are formed in the front side of the upper and lower portions 64 of the hood 18. The lower compression slot 78 is typically removed when the bottom of the saw blade hood 18 is trimmed to fit the circular saw 82. The upper compression slot 78 allows the width of the upper end 64 of the saw blade hood 18 to compress and fit snugly into the upper blade guard 98.



FIG. 10 shows a back view of the dust collection shroud 10. FIG. 10 shows the blade slot 74. The blade slot 74 is usually between about 0.1 inches wide and about 0.5 inches wide, and it is typically about 0.25 inches wide. The blade slot 74 extends vertically along the entire height of the front of the saw blade hood 18.



FIG. 11 shows a top view of the dust collection shroud 10. FIG. 12 shows a bottom view of the dust collection shroud 10. The saw blade channel 66 extends vertically through the saw blade hood 18 and allows dust to move from any location in the hood 18 towards the opening 62 and out of the vacuum port 34. The bottom of the saw blade channel 66 (after trimming the lower portion 64 of the hood 18) is disposed adjacent the saw base plate 86 and is mostly closed by the material being cut by the saw 82. The upper portion 64 of the saw blade channel 66 is disposed in the upper blade guard 98. Much of the dust created by the blade 106 is ejected from the blade teeth inside of the bottom of the blade channel 66 and is carried out of the vacuum port 34 by the airflow generated by a vacuum. In using the circular saw 82 and the dust collection shroud 10, the vacuum hose would typically be inserted into the vacuum port 34 and would extend upwardly and curve backwards as indicated generally at 150 in FIG. 2.


Referring now to FIG. 13, an isometric drawing of another embodiment of the dust collection shroud 10 is shown. The shroud 10 includes a shroud body 14, a saw blade hood 18, and a vacuum port 34. The vacuum port 34 is pneumatically connected to the saw blade hood 18 via a dust collection chamber/passage 38 which extends through the shroud body 14. The vacuum port 34 extends forwards and upwards from the shroud body 14. The vacuum port 34 provides an opening which receives a standard 1.25 or 1.5 inch vacuum hose to thereby connect the dust collection shroud 10 to a vacuum such as a shop canister vacuum. The example vacuum port 34 includes an internal thread or ridges 154 which engage the exterior of the vacuum hose. Many vacuum hoses are formed with a ribbed exterior to prevent collapse and may have a helical rib which threads into threads/ribs 154 in the vacuum port to retain the vacuum hose in the vacuum port 34. The bore of the vacuum port 34 is pneumatically connected to a dust collection passage 38 which is formed by the shroud body 14 and passes through the shroud body 14. The dust collection passage 38 receives dust from the circular saw and transmits the dust through the vacuum port 34 to be collected by a vacuum. The dust collection passage 38 includes an opening, indicated at 42, which interfaces with the saw blade hood 18. The saw blade hood 18 is attached to the shroud body 14 and is typically formed as a single piece with the shroud body 14. The saw blade hood 18 defines a vertical channel which extends around the circular saw blade when the dust collection shroud 10 is in use.


The shroud body 14 also includes a mounting flange 158 which extends generally vertically from the shroud body 14 and is used to attach the dust shroud 10 to a circular saw. Typically, the shroud body, including the saw blade hood 18, vacuum port 34, and mounting flange 158, is made from plastic. A metal mounting bracket 162 and a screw 166 are used in combination with the mounting flange 158 to attach the dust collection shroud 10 to the circular saw. The metal mounting bracket 162 is generally “U” shaped and extends through a slot 170 in the saw blade hood 18. The metal mounting bracket 162 includes a first vertical leg which extends parallel to the mounting flange 158 and contacts the mounting flange 158. The first vertical leg is attached to a generally horizontal portion of the metal mounting bracket 162 which extends to the saw blade hood and passes through the slot 170. The generally horizontal portion of the metal mounting bracket 162 may be curved (such as arching upwardly as shown) if needed to accommodate a desired shape of the shroud body 14. A curved horizontal portion of the mounting bracket 162 may also provide some horizontal spring and flexibility and may help provide a secure connection between the shroud 10 and the stationary blade guard 98. A second vertical leg is attached to the generally horizontal portion of the metal mounting bracket 162 and extends upwardly inside of the saw blade hood 18 against the wall of the saw blade hood 18. The first vertical leg and the second vertical leg of the metal mounting bracket are generally parallel to each other and extend upwardly from the horizontal portion of the metal mounting bracket. The metal mounting bracket 162 includes a threaded boss 174 which provides additional threads and strength for the screw 166. The threaded boss 174 is attached to or part of the first vertical leg and the screw 166 passes through the mounting flange 158 and the metal mounting bracket 162.


The mounting flange 158, metal mounting bracket 162, and screw 166 are used to attach the dust collection shroud 10 to a circular saw via the blade guard of the circular saw. The screw 166 presses the outer side of the dust collection shroud 10 against the adjacent wall of the upper blade guard 98 to thereby secure the dust collection shroud 10 to the circular saw.


The upwardly extending end of the saw blade hood 18 will extend upwardly into the blade guard of a circular saw. The downwardly extending end of the saw blade hood 18 will extend downwardly towards the bottom of the saw base plate. The saw blade hood 18 is oriented vertically in the plane of the saw blade and the saw blade extends into a saw blade channel 66 formed through the center of the saw blade hood 18. The saw blade channel 66 extends vertically through the saw blade hood 18. The saw blade hood 18 includes a blade slot 74 that extends through the saw blade hood 18 vertically along the rear of the saw blade hood 18. The blade slot 74 is generally aligned with the middle of the saw blade channel 66. When the shroud 10 is installed onto a circular saw, the saw blade extends through the saw blade slot 74 and the saw blade teeth at the front of the saw blade are disposed in the saw blade channel 66.


The saw blade hood 18 includes a plurality of inner fingers 178 which extend inward from the inner side of the saw blade hood and outer fingers 178 which extend inwardly from the outer side of the saw blade hood 18. The example fingers 178 are oriented generally perpendicular to the plane of a saw blade and extend inwardly towards the center of the saw blade channel 66. The fingers may also be disposed at an angle to the plane of the saw blade 106. The fingers 178 stop short of the center of the blade channel 66 and create a planar gap between ends of the fingers 178 which is generally aligned with the saw blade slot 74. Once the shroud 10 is installed onto a circular saw, the saw blade passes between the ends of the fingers 178 and the fingers 178 extend towards the saw blade on both sides of the saw blade. The fingers 178 are typically distributed across the entire interior of the saw blade channel 66. The example fingers 178 are approximately 0.2 inches wide and approximately 0.1 inches thick and sufficiently long to extend to a position adjacent the saw blade. The fingers 178 are distributed across the interior of the saw blade channel 66 so that there is a gap between rows and columns of fingers which is approximately equal to the width of the fingers. That is to say that there is a gap of approximately 0.2 inches horizontally between adjacent fingers and a similar gap vertically between adjacent fingers. Rows of fingers 178 are typically offset so that a finger 178 is positioned in vertical alignment with the gap between fingers in the rows of fingers above and below that finger.


The fingers 178 block high velocity cutting debris and stop the debris so that it can be entrained into the airflow and be captured by the vacuum. as the circular saw cuts through material, the debris created from the cut is carried by the teeth of the saw blade at a high velocity and is thrown from the teeth. As the debris exits the gullets between the blade teeth, debris strikes the fingers 178; losing a significant amount of energy and speed. The lower velocity debris is then more easily entrained into the vacuum created airflow through the dust shroud 10 and is collected by the vacuum. The fingers 178 thus increase the collection efficiency of the shroud 10.


The upper and lower ends of the saw blade hood 18 are formed with a compression/flexibility slot 78 along the front side (away from the blade) of the saw blade hood 18. This compression slot 78 helps the upwardly extending end 64 of the hood 18 to conform to the saw blade guard. The circular saw dust shroud 10 is typically molded from a mildly flexible material which is still relatively rigid to provide necessary strength allow conformation to the saw blade guard. The saw blade hood 18 may contact the inside of the saw blade guard once it is installed and the slots 78 allow the saw blade hood to bend slightly and adjust to the particular saw blade guard.


The saw blade hood 18 may include a hinge 180 which allows the inside half/section 18A of the saw blade hood to pivot away from the outside half/section 18B of the saw blade hood. The hinge 180 may be useful in allowing easier manufacturing of the shroud 10, such as by injection molding. The hinge 180 may also simplify installation of the shroud 10 in some circular saws 82. The dust collection shroud 10 may also be manufactured via additive manufacturing and a hinge 180 may not be necessary in such a situation.



FIG. 14 shows a perspective drawing of the dust collection shroud 10 attached to a circular saw 82. The circular saw 82 includes a base plate 86 which contacts a material being cut by the saw. The saw 82 also includes a motor 90, hand grip 94, upper blade guard 98, lower movable blade guard 102, and blade 106. Other parts of the circular saw 82 which do not directly interface with the dust collection shroud 10 are not individually numbered. The dust collection shroud 10 has been attached to the upper blade guard 98. The screw 166 has been advanced towards the upper blade guard 98 so that the upper blade guard 98 is held between the saw blade hood 18 and the screw 166. The far side of the saw blade hood is disposed on the far side of the saw blade 106 and the near side of the saw blade hood 18 is disposed on the near side of the saw blade 106; with the blade 106 passing into the channel 66 in the saw blade hood 18. The bottom of the dust collection passage 38 is positioned adjacent the saw base plate 86. The vacuum port 34 is positioned adjacent the front of the circular saw 82 and is angled forwards and upwards.


As shown, the saw blade hood 18 extends downwardly past the base plate 86 of the circular saw 82. If the dust collection shroud 10 is made of a sufficiently flexible material, the lower end of the saw blade hood will bend rearwardly into a blade slot on the saw base plate when the circular saw is moved forwards across a workpiece which is being cut. If the dust collection shroud 10 is made of a more rigid material, the lower end of the saw blade hood 18 may be cut with a hand saw or utility knife to remove the portion of the hood 18 which extends downwardly past the saw base plate 86.


When the dust collection shroud 10 is installed on a circular saw 82 as shown in FIG. 14, the dust collection passage 38 is extends from the front of the blade to a position adjacent the side of the base plate 86 and to a position adjacent the front of the saw base plate 86. This positions the dust collection chamber adjacent the point where dust is generated while cutting. The saw blade hood 18 extends around the front of the saw blade 106 and is positioned close to the front of the upper blade guard 98. The dust collection shroud 10 both collects a majority of dust near the point of dust generation and keeps dust contained within the saw upper blade guard 98; reducing the amount of dust which is spread into the environment during use of the circular saw 82.



FIG. 15 shows a side view of the dust collection shroud 10 and the circular saw 82. It can be seen how the dust collection shroud 10 is compact and does not extend significantly beyond the original size of the circular saw 82. It can also be seen how the dust collection shroud 10 may be used with a hose anchor 182. The hose anchor includes a base which is attached to the circular saw 82 with a hook and loop cinch strap, a zip tie, double sided tape, or adhesive and an upper hose loop which receives a vacuum hose 32. The vacuum hose 32 is passed through the hose anchor 182 and is attached to the dust collection shroud 10.


In operation, a vacuum (such as a canister vacuum, not shown) is used to draw air through the shroud 10 to collect dust and debris. Air flows from an area around the front of the saw blade 106, into the saw blade hood 18, through an opening 42 between the saw blade hood 18 and the dust collection passage 38, through the dust collection passage, through the bore of the vacuum port 34, through a vacuum hose 32, and into the vacuum or dust collector.



FIG. 16 shows a drawing of the dust collection shroud 10 and the saw blade 106 and illustrates the position of the dust collection shroud 10 relative to the saw blade 106. This drawing better illustrates how the finger 178 extend inwardly from left and right sides of the saw blade hood 18 and terminate adjacent left and right faces of the saw blade 106. The saw blade 106 passes through the blade slot 74 and between the fingers 178. The saw blade teeth are positioned towards the front of the saw blade channel 66 but is spaced away from the front of the saw blade hood 18.



FIG. 17 shows another perspective view of the front of the dust collection shroud 10. This drawing shows the right side of the shroud 10 as viewed from the front. The bottom of the saw blade hood 18 includes a shoulder 186 and a lower section 190 of reduced size and thickness. For many circular saws, the lower section 190 fits through the blade slot in the circular saw base plate 86. For some saw, the shoulder 186 rests against the base plate. The upper portion of the saw blade hood 18 and the lower shoulder 186 are held between the fixed upper blade guard 98 and the base plate 86 and help to stabilize the shroud 10. The thinner lower section 190 of the saw blade hood 18 allows flexibility as discussed above when the dust collection shroud 10 is made from a more flexible material. If the dust collection shroud 10 is made from a more rigid material, a user may more easily trim the bottom of the saw blade hood 18 to length.



FIG. 18 shows a perspective view of the dust collection shroud 10 from the rear left of the shroud 10. The back of the inside side of the saw blade hood 18 (which is positioned on the inside of the saw blade 106) is straight from top to bottom. The back of the outside side of the saw blade hood 18 (which is positioned on the outside of the saw blade 106) includes a rearward bulge 194 which extends rearwardly and provides a wider lower inlet opening on the outside side of the saw blade hood 18.



FIG. 19 shows a rear perspective view of the dust collection shroud 10 with the inside half 18A of the saw blade hood 18 pivoted away from the outside half 18B of the saw blade hood 18 at the hinge 180. The internal features of the dust collection shroud 10 are more readily observed. The fingers 178 may be positioned in the interior of the saw blade channel 66 so that there is less space between the fingers 178 in an upper section of fingers 178 adjacent the top of the saw blade hood and so that there is more space between fingers 178 in a lower section of fingers 178 adjacent the opening 42 between the saw blade channel 66 and the dust collection passage 38. The upper section of fingers 178 are spaced apart from adjacent fingers a distance which is approximately equal to the width of the fingers 178. The lower section of fingers 178 are spaced apart a distance which is approximately equal to twice the width of the fingers 178.


The second vertical leg of the metal mounting bracket 162 is also visible inside of the outside half 18B of the saw blade hood 18. The second vertical leg of the metal mounting bracket 162 extends into the saw blade channel 66 via slot 170 and extends upwardly along the side wall of the saw blade hood 18. FIG. 20 shows a perspective view of a portion of the shroud 10 with the inner half 18A of the saw blade hood 18 not shown. FIG. 20 shows how the side wall of the saw blade hood 18 may be formed with retaining tabs 198 which engage the metal mounting bracket 162 to secure the mounting bracket 162 in position on the shroud 10. The mounting bracket 162 supports the saw blade hood 18 and allows the shroud 10 to be securely attached to a circular saw blade guard 98 by holding the blade guard 98 between the saw blade hood 18 and the screw 166.



FIG. 21 shows a rear perspective view of the dust collection shroud 10. It can be seen how the inside side 18A of the saw blade hood 18 is generally straight along its rear edge while the outside side 18B of the saw blade hood 18 includes a rearwardly extending bulge 194 which creates a larger lower opening.



FIG. 22 shows a left side view of the dust collection shroud 10. It can be seen how the dust collection passage 38 extends forwards and upwards from a position near the bottom of the saw blade hood 18. The vacuum port 34 extends forwards and upwards at an angle of approximately 45 degrees relative to the base plate 86 of the circular saw 82. The rear edge of the outside side 18B of the saw blade hood 18 curves rearwardly to the bulge 194. The lower section 190 of the saw blade hood 18 is angled such that the front of the saw blade hood 18 is lower than the rear of the saw blade hood 18. The outside half 18B of the saw blade hood 18 may include an upper notch 202 which removes an upper rear portion of the outside half 18B of the saw blade hood 18.



FIG. 23 shows a right side view of the dust collection shroud 10. The inside side of the lower portion 190 of the saw blade hood may include a rear notch 206 which removes a lower rear portion of the lower portion 190 of the saw blade hood 18.



FIG. 24 shows a top view of the dust collection shroud 10. The generally horizontal middle portion of the metal mounting bracket 162 is more easily seen. This drawing also illustrates how the fingers 178 extend laterally inwardly towards the center of the saw blade channel 66 and create a gap which is aligned with the saw blade slot 74.



FIG. 25 shows a bottom view of the dust collection shroud 10. FIG. 26 shows a front view of the dust collection shroud 10. The compression slots 78 formed in the top and in the bottom of the saw blade hood 18 allow the top portion and the bottom portion of the saw blade hood 18 to bend more easily and conform to the inside shape of the stationary upper blade guard 98 and the saw base plate 86.



FIG. 27 shows a back view of the dust collection shroud 10. The saw blade hood 18 does not include fingers 178 on the bottom portion of the hood 18 below the dust collection passage 38 and includes fingers 178 on the upper portion of the hood 18 above the dust collection passage 38.



FIG. 28 shows a rear perspective view of another embodiment of the dust collection shroud 10. FIG. 29 shows a left side view of the dust collection shroud. This embodiment is similar to the shroud 10 shown in FIGS. 13 through 27 and includes similar features unless otherwise noted. This dust collection shroud 10 includes a few modifications to allow for easier manufacture by conventional plastic molding. The vacuum port 34 has been molded as a separate piece. The separate vacuum port 34 is angled downwardly towards the saw base plate 86 as shown before and includes a portion of the dust collection passage 38 which directs the dust collection passage 38 horizontally backwards. The vacuum port 34 includes a flange 210 which is captured in a mating groove 214 in the body 14 of the dust collection shroud 10. The dust collection shroud body 14 is formed with a hatch 218 which is attached to the body 14 by a flexible hinge 222. The hatch 218 also includes a portion of the groove 214 and the vacuum port flange 210 is captured between the hatch 218 and body 14 when the hatch is closed. As shown, the hatch 218 also forms part of the dust collection passage 38. The hatch 218 includes two latching fingers 226 with retaining barbs that engage a slot 230 formed in the body 14 to hold the hatch 218 closed. The mounting flange 158 is formed on top of the hatch 218. Although they are not shown, the shroud 10 includes a mounting bracket 162, screw 166, and threaded boss 174. The slot 170 which allows the mounting bracket 162 to pass into the interior of the saw blade hood 18 is more easily seen without the mounting bracket 162 shown. The assembled shroud 10 is similarly configured and functions the same as the embodiment shown in FIGS. 13 through 27.


The dust collection shroud 10 is advantageous as it can be easily attached to many different brands and models of circular saws 82. The shroud 10 is secure while being easy to attach to the saw 82. The dust collection shroud 10 allows most of the dust and debris generated while using the saw to be collected and minimal debris escapes into the surrounding environment. The compact design of the dust collection shroud 10 provides little if any inconvenience to a person using the circular saw 82 and increases worker compliance in using the dust collection shroud.


The above description of illustrated examples of the present invention, including what is described in the Abstract, are not intended to be exhaustive or to be limiting to the precise forms disclosed. While specific examples of the invention are described herein for illustrative purposes, various equivalent modifications are possible without departing from the broader scope of the present claims. Indeed, it is appreciated that specific example dimensions, materials, etc., are provided for explanation purposes and that other values may also be employed in other examples in accordance with the teachings of the present invention.

Claims
  • 1. A dust collection shroud for a hand held circular saw having a circular saw blade comprising: a shroud body comprising: a saw blade hood having a left side wall, a right side wall, a front wall, and a back wall, the saw blade hood forming a dust collection chamber;a dust collection passage extending from the saw blade hood and pneumatically connected to the dust collection chamber via an opening in the saw blade hood;a vacuum port pneumatically connected to the dust collection passage;a plurality of projections which extend inwardly from the saw blade hood into the dust collection chamber, wherein, when the dust collection shroud is connected to a hand held circular saw for use, the plurality of projections are attached to the saw blade hood at a position above the opening to the dust collection passage such that the plurality of projections are after the opening to the dust collection passage relative to the rotation of the circular saw blade.
  • 2. The dust collection shroud of claim 1, wherein the opening is located in one of the left side wall or the right side wall of the saw blade hood and wherein, when the dust collection shroud is connected to the hand held circular saw, the dust collection passage extends laterally away from the saw blade hood and forward to position the vacuum port in front of the saw blade.
  • 3. The dust collection shroud of claim 1, further comprising: a mounting flange which extends generally parallel to and spaced apart from one of the left side wall or the right side wall of the saw blade hood;a metal mounting bracket which is attached to the shroud body and the mounting flange, wherein the mounting bracket comprises a first leg which is positioned adjacent to the mounting flange, a horizontal section which extends from the first leg towards the saw blade hood, and a second leg which is attached to the one of the left side wall or the right side wall of the saw blade hood;a screw which passes through the first leg of the mounting bracket; andwherein, when the dust collection shroud is attached to the hand held circular saw, a stationary upper blade guard is positioned between the first leg and the second leg and the stationary upper blade guard is held against the one of the left side wall or the right side wall of the saw blade hood by the screw.
  • 4. The dust collection shroud of claim 3, wherein the second leg of the mounting bracket is located inside of the saw blade hood in the dust collection chamber and extends along the one of the left side wall or the right side wall of the saw blade hood.
  • 5. The dust collection shroud of claim 3, wherein the mounting flange is attached to and extends vertically from the dust collection passage and wherein the first leg of the metal mounting bracket extends parallel to and in contact with the mounting flange.
  • 6. The dust collection shroud of claim 1, wherein a top end of the saw blade hood is open and is positioned inside of a circular saw stationary upper blade guard, and wherein the plurality of projections are located between the opening to the dust collection passage and the top of the dust collection hood.
  • 7. The dust collection shroud of claim 1, wherein the plurality of projections comprises a first group of projections which extend inwardly into the dust collection chamber from the left side wall and a second group of projections which extend inwardly into the dust collection chamber from the right side wall and create a gap between opposing projection ends, and wherein, when the dust collection shroud is attached to the hand held circular saw, a saw blade is positioned in the gap between the opposing projection ends.
  • 8. The dust collection shroud of claim 1, wherein the plurality of projections comprise a first row of projections and a second row of projections located above the first row of projections.
  • 9. The dust collection shroud of claim 1, wherein, when the dust collection shroud is connected to the hand held circular saw, the saw blade hood is positioned inside of a circular saw stationary upper blade guard such that a top of the saw blade hood is above a bottom of a front portion of the stationary upper blade guard and such that an outer front surface of the front wall of the saw blade hood is positioned adjacent an inner surface of the front portion of the upper blade guard.
  • 10. A dust collection shroud for a hand held circular saw comprising: a plastic shroud body comprising: a saw blade hood forming a dust collection chamber in an interior thereof, the dust collection chamber being configured to receive a saw blade;a saw blade slot formed through a back of the saw blade hood;a dust collection passage extending from the saw blade hood and pneumatically connected to the dust collection chamber to remove dust from the dust collection chamber;a vacuum port pneumatically connected to the dust collection passage;a mounting flange extending generally parallel to and spaced apart from a side of the saw blade hood;a metal mounting bracket attached to the shroud body, the mounting bracket having a first leg which is positioned adjacent to the mounting flange, a horizontal section extending from the first leg towards the saw blade hood, and a second leg attached to the side of the saw blade hood;a screw which passes through the mounting flange and the first leg of the mounting bracket;wherein, when the dust collection shroud is mounted to a hand held circular saw: the saw blade hood is positioned inside of a circular saw stationary upper blade guard at a front of the stationary upper blade guard and the screw presses the upper blade guard against the side of the saw blade hood.
  • 11. The dust collection shroud of claim 10, wherein, when the dust collection shroud is mounted to the hand held circular saw, the saw blade hood is positioned inside of the circular saw stationary upper blade guard wherein a top of the saw blade hood is above a bottom of the front of the stationary upper blade guard and wherein a front outer surface of the saw blade hood is adjacent an inner surface of the front of the stationary upper blade guard.
  • 12. The dust collection shroud of claim 10, wherein the shroud comprises a first group of projections which extend inwardly into the dust collection chamber form a left side of the side blade hood and a second group projections which extend inwardly into the dust collection chamber from a right side of the saw blade hood and create a gap between ends of opposing projections, wherein, when the dust collection shroud is in use, a saw blade is positioned in the gap between the ends of the opposing projections, and wherein the side of the saw blade hood to which the second leg of the mounting bracket is attached is one of the left or right sides of the saw blade hood.
  • 13. The dust collection shroud of claim 10, further comprising projections which extend inwardly into the dust collection chamber from the saw blade hood from a location in the saw blade hood which is above an opening connecting the dust collection chamber to the dust collection passage such that, relative to rotation of a circular saw blade of the hand held circular saw, the projections are located after the opening to the dust collection passage.
  • 14. The dust collection shroud of claim 13, wherein a top end of the saw blade hood is open and wherein the projections extend inwardly from left and right sides of the saw blade hood at locations between the opening to the dust collection passage and the top of the saw blade hood, wherein the side of the saw blade hood to which the second leg of the mounting bracket is attached is one of the left or right sides of the saw blade hood.
  • 15. The dust collection shroud of claim 13, wherein the projections comprise a first row of projections and a second row of projections located above the first row of projections relative to the opening.
  • 16. A dust collection shroud for a hand held circular saw comprising: a shroud body comprising: a saw blade hood forming a dust collection chamber in an interior thereof;a saw blade slot formed through a back of the saw blade hood;an opening in a lower portion of the saw blade hood;a dust collection passage extending from the saw blade hood and pneumatically connected to the interior of the saw blade hood via the opening and configured to remove dust from the dust collection chamber;a first group of projections which extend inwardly into the dust collection chamber from a left side of the saw blade hood from a position on the saw blade hood which is above the opening;a second group of projections which extend inwardly into the dust collection chamber from a right side of the saw blade hood from a position on the saw blade hood which is above the opening;wherein, when the dust collection shroud is connected to a hand held circular saw for use, the position at which the first group of projections and the second group of projections are attached to the saw blade hood is above the opening to the dust collection passage.
  • 17. The dust collection shroud of claim 16, wherein a top of the saw blade hood is open and is positioned inside of a circular saw stationary upper blade guard and wherein the first group of projections and the second group of projections are located above the opening and below the top of the saw blade hood.
  • 18. The dust collection shroud of claim 16, wherein the first group of projections comprises a first row of projections and a second row of projections located above the first row of projections, and wherein the second group of projections comprises a first row of projections and a second row of projections located above the first row of projections.
  • 19. The dust collection shroud of claim 16, further comprising a mounting flange which extends generally parallel to and spaced apart from one of the left side or the right side of the saw blade hood;a metal mounting bracket attached to the shroud body, wherein the mounting bracket comprises a first leg which is positioned adjacent to the mounting flange, a horizontal section which extends from the first leg towards the saw blade hood, and a second leg which is attached to the one of the left side or the right side of the saw blade hood, a screw which passes through the mounting flange and the first leg of the mounting bracket, and wherein, when the dust collection shroud is attached to the hand held circular saw, a circular saw stationary upper blade guard is positioned between the first leg and the second leg and the stationary upper blade guard is held against the one of the left side or the right side of the saw blade hood by the screw.
  • 20. The dust collection shroud of claim 16, wherein, when the dust collection shroud is connected to the hand held circular saw, the saw blade hood is positioned inside of a circular saw stationary upper blade guard such that a top of the saw blade hood is above a bottom of a front of the stationary upper blade guard and such that an outer front surface of the front of the saw blade hood is positioned against an inner surface of the front of the upper blade guard.
PRIORITY

The present application claims the benefit of U.S. Provisional Application Ser. No. 62/824,406, filed Mar. 27, 2019, which is herein incorporated by reference in its entirety.

US Referenced Citations (359)
Number Name Date Kind
437004 Shipley Sep 1890 A
907734 Butterfield Dec 1908 A
1123562 Lund Jan 1915 A
1197967 Swenson Sep 1916 A
1302263 Woodworth Apr 1919 A
RE15262 Gurgel Jan 1922 E
1432660 Borque Oct 1922 A
1643882 Faiver Sep 1927 A
1779031 Casey Oct 1930 A
1830151 Wilderson Nov 1931 A
1833785 Krieger Nov 1931 A
1850504 Janes Mar 1932 A
2032382 Torrison Mar 1936 A
2041689 Baumeister May 1936 A
2212361 Arthur Aug 1940 A
2279186 Terry et al. Apr 1942 A
2291269 Wiggleworth Jul 1942 A
2294272 Boice Aug 1942 A
2312443 Reiter Mar 1943 A
2339324 Fischer Jan 1944 A
2384688 Morris Sep 1945 A
2440684 Huelster May 1948 A
2440685 Huelster May 1948 A
2503854 Trainor Apr 1950 A
2520725 Judd Aug 1950 A
2676624 Gecman Apr 1954 A
2803098 Robert et al. Aug 1957 A
2817134 Fenton Dec 1957 A
2819570 Guilbert et al. Jan 1958 A
2819571 Morgan Jan 1958 A
2994995 Griffith Aug 1961 A
3091851 Cummins Jun 1963 A
3166877 Reames Jan 1965 A
3256648 Subonovich Jun 1966 A
3339435 Heitz Sep 1967 A
3468076 Jones Sep 1969 A
3511322 Holman May 1970 A
3667170 MacKay Jun 1972 A
3673744 Oimoen Jul 1972 A
3826045 Champayne Jul 1974 A
3835543 Polydoris et al. Sep 1974 A
3848686 Jysky et al. Nov 1974 A
3862521 Isaksson Jan 1975 A
3882598 Earle et al. May 1975 A
3882644 Cusumano May 1975 A
3945281 Kreitz Mar 1976 A
3987589 Marton Oct 1976 A
4011792 Davis Mar 1977 A
4016649 Kloster Apr 1977 A
4033035 Trimmer Jul 1977 A
4063478 Stuy Dec 1977 A
4090297 Wanner May 1978 A
4135334 Rudiger Jan 1979 A
4160319 Caruso Jul 1979 A
4201256 Truhan May 1980 A
4241505 Bodycomb, Jr. et al. Dec 1980 A
4253362 Olson Mar 1981 A
4296572 Quintana Oct 1981 A
4300426 Weaver Nov 1981 A
4326864 Sittler Apr 1982 A
4367665 Terpstra et al. Jan 1983 A
4381628 Dicke May 1983 A
4400995 Palm Aug 1983 A
4456303 Due Jun 1984 A
4515504 Moore May 1985 A
4566511 Robinson Jan 1986 A
4574532 Haberle et al. Mar 1986 A
4576072 Terpstra et al. Mar 1986 A
4622782 Roestenberg Nov 1986 A
4641401 Hasegawa Feb 1987 A
4646480 Williams Mar 1987 A
4697389 Romine Oct 1987 A
4761877 Rupp Aug 1988 A
4765099 Tanner Aug 1988 A
4782632 Matechuk Nov 1988 A
4868949 Loveless et al. Sep 1989 A
4891915 Yasuda Jan 1990 A
4905420 Flachenecker et al. Mar 1990 A
4921308 Yelton et al. May 1990 A
4921375 Famulari May 1990 A
4930264 Huang Jun 1990 A
4932163 Chilton et al. Jun 1990 A
4932164 Sullivan et al. Jun 1990 A
5033552 Hu Jul 1991 A
5034041 Austin Jul 1991 A
5061123 Broussard Oct 1991 A
5069695 Austin Dec 1991 A
5074044 Duncan et al. Dec 1991 A
5084972 Waugh Feb 1992 A
5105585 Hampl et al. Apr 1992 A
5125190 Buser et al. Jun 1992 A
5131192 Cheng Jul 1992 A
5163252 Garner et al. Nov 1992 A
5167215 Harding, Jr. Dec 1992 A
5170588 Schaal Dec 1992 A
5176408 Pedersen Jan 1993 A
5201785 Nagano Apr 1993 A
5237781 Demetrius Aug 1993 A
5259087 Loveless et al. Nov 1993 A
5305729 Chiuminatta et al. Apr 1994 A
5319889 Rudolf et al. Jun 1994 A
5327649 Skinner Jul 1994 A
5339571 Timmons et al. Aug 1994 A
5381780 Yelton et al. Jan 1995 A
5411433 Keller May 1995 A
5435066 Bare Jul 1995 A
5440809 Padilla Aug 1995 A
5445056 Folci Aug 1995 A
5527207 Azar et al. Jun 1996 A
5545082 Courson et al. Aug 1996 A
5558571 Toyoshima et al. Sep 1996 A
5564408 Bassols Oct 1996 A
5566457 Batschari et al. Oct 1996 A
5575035 Reis et al. Nov 1996 A
D376526 Hepburn Dec 1996 S
5582225 Schank Dec 1996 A
5588213 Swanberg Dec 1996 A
5609516 Courson et al. Mar 1997 A
5637034 Everts et al. Jun 1997 A
5653561 May Aug 1997 A
5662440 Kikuchi Sep 1997 A
5675895 Mori et al. Oct 1997 A
5680704 Okubo Oct 1997 A
5688082 Richardson Nov 1997 A
5704956 Loveless et al. Jan 1998 A
5713785 Nishio Feb 1998 A
D392531 Richardson Mar 1998 S
5774992 Lindenmuth Jul 1998 A
5791979 Duncan et al. Aug 1998 A
5815933 Staniszewski Oct 1998 A
5816733 Ishikawa et al. Oct 1998 A
5819619 Miller et al. Oct 1998 A
5833524 Satoh et al. Nov 1998 A
5931072 Shibata Aug 1999 A
5941765 Taylor Aug 1999 A
5954863 Loveless et al. Sep 1999 A
6019433 Allen Feb 2000 A
6027399 Stewart Feb 2000 A
6053674 Thompson Apr 2000 A
6108912 Radigan Aug 2000 A
6112736 Bearden Sep 2000 A
6138317 Holmes et al. Oct 2000 A
6167626 Doumani et al. Jan 2001 B1
6183527 O'Banion et al. Feb 2001 B1
6219922 Campbell et al. Apr 2001 B1
6230411 Wall May 2001 B1
6273081 Gorgol et al. Aug 2001 B1
6318352 Gnazzo et al. Nov 2001 B1
6347985 Loveless Feb 2002 B1
6349712 Halstead Feb 2002 B1
D456234 Keller Apr 2002 S
D456685 Keller May 2002 S
D458825 Keller et al. Jun 2002 S
6412179 Ende Jul 2002 B1
6470778 Kaye, Jr. et al. Oct 2002 B1
6471574 Rupprecht et al. Oct 2002 B1
6557261 Buser et al. May 2003 B1
6568088 Ende May 2003 B1
6648742 Segiel Nov 2003 B1
6651343 Laren et al. Nov 2003 B2
6678960 Williams Jan 2004 B2
6679145 Lee Jan 2004 B1
6699114 Booeshaghi et al. Mar 2004 B1
6726554 Chen et al. Apr 2004 B1
6748660 Buser et al. Jun 2004 B2
6786556 Due Sep 2004 B2
6796208 Jorgensen Sep 2004 B1
6811476 Ohlendorf Nov 2004 B2
6823907 Cheng Nov 2004 B2
D499946 Stirm Dec 2004 S
6827640 Bures et al. Dec 2004 B2
6830113 Moore et al. Dec 2004 B2
6860799 Loveless Mar 2005 B2
6878050 Wendt et al. Apr 2005 B2
6886441 Hamilton May 2005 B2
6887146 Staas May 2005 B2
6896604 Taylor May 2005 B1
6896605 Ohlendorf May 2005 B2
6902594 Cho Jun 2005 B2
6935939 Buser et al. Aug 2005 B1
6948412 Brazell et al. Sep 2005 B2
6960124 Lee Nov 2005 B2
D513161 Chilton Dec 2005 S
6988939 Hoffmann et al. Jan 2006 B2
6997653 Styles Feb 2006 B2
7000605 Due Feb 2006 B2
7013884 Guth Mar 2006 B2
7014547 Kleider Mar 2006 B2
7044039 Powell May 2006 B2
7044843 Lin May 2006 B1
7047647 Muller May 2006 B1
7047650 Chen May 2006 B2
7069831 Chang Jul 2006 B2
7112005 Due Sep 2006 B2
7159323 Petrenko Jan 2007 B2
7171880 Powell Feb 2007 B2
D537691 Lamprecht et al. Mar 2007 S
D537692 Aglassinger Mar 2007 S
7195429 Dods et al. Mar 2007 B2
7197826 Baxivanelis Apr 2007 B2
7198559 Walstrum et al. Apr 2007 B2
7204178 Bergmann Apr 2007 B2
7216572 Keenan May 2007 B2
7222560 Parks et al. May 2007 B2
7223161 Kodani et al. May 2007 B2
7249914 Due Jul 2007 B2
D553933 Esenwein Oct 2007 S
7296356 Ngan Nov 2007 B2
7300337 Sun et al. Nov 2007 B1
7322429 Kim Jan 2008 B2
7438629 Bosten et al. Oct 2008 B2
7438633 Jespersen Oct 2008 B2
D593389 Clayton Jun 2009 S
7578063 Martin Aug 2009 B2
7625265 Woods et al. Dec 2009 B2
7628682 Andrasic et al. Dec 2009 B2
7635293 Sun et al. Dec 2009 B2
7661194 Ende Feb 2010 B1
7661195 Wood Feb 2010 B1
D614678 Jorgensen et al. Apr 2010 S
7740086 Bleicher et al. Jun 2010 B2
7797794 Bleicher et al. Sep 2010 B2
7805805 Loveless Oct 2010 B2
7887624 Ekstrom et al. Feb 2011 B2
7892075 Esenwein Feb 2011 B2
7958641 Ende Jun 2011 B1
7985042 Paxton Jul 2011 B1
8011398 Loveless Sep 2011 B2
8061344 Dofher Nov 2011 B2
8133094 Loveless Mar 2012 B2
8137165 Loveless Mar 2012 B2
8177606 Loveless May 2012 B2
8181559 Ende May 2012 B1
8209872 Ende Jul 2012 B1
8381711 Loveless Feb 2013 B2
D677139 Yamamoto Mar 2013 S
D677545 Sell Mar 2013 S
D677547 Rosenau Mar 2013 S
D677548 Rosenau Mar 2013 S
D678028 Rosenau Mar 2013 S
8409310 Despineux et al. Apr 2013 B2
D687195 Sell Jul 2013 S
8523637 Loveless Sep 2013 B2
8561512 Loveless Oct 2013 B2
8662964 Hiller Mar 2014 B2
8702478 Loveless et al. Apr 2014 B2
8740674 Esenwein Jun 2014 B2
D711717 Walz et al. Aug 2014 S
D717844 Cappuccio Nov 2014 S
D719806 Wiedemann Dec 2014 S
8967922 Yoshikane et al. Mar 2015 B2
8978781 Burdick et al. Mar 2015 B2
9027542 Ronzello May 2015 B2
9038275 Jensen et al. May 2015 B2
9073228 Inayoshi Jul 2015 B2
D736582 Dietsche Aug 2015 S
9101993 Yokota et al. Aug 2015 B2
D741557 Young Oct 2015 S
D742081 Young Oct 2015 S
D742710 Wiedemann Nov 2015 S
D743230 Wiedemann Nov 2015 S
9440344 Ikuta et al. Sep 2016 B2
D774865 Chen Dec 2016 S
9555554 Thorson et al. Jan 2017 B2
9573286 Gantke Feb 2017 B2
D793456 Lindsay Aug 2017 S
D800804 Cappuccio Oct 2017 S
9776296 Brewster Oct 2017 B2
9937638 Numata Apr 2018 B2
D816453 Hansen et al. May 2018 S
10035240 Buser Jul 2018 B2
10045671 Wiedemann et al. Aug 2018 B2
D853814 Koeniger et al. Jul 2019 S
10800003 Moller Oct 2020 B2
20010023168 Wuensch Sep 2001 A1
20020002774 Onose Jan 2002 A1
20020104416 Brickner, Jr. Aug 2002 A1
20020144405 Moore Oct 2002 A1
20020189415 Oktavec Dec 2002 A1
20030032381 Dutterer Feb 2003 A1
20030104767 Chilton Jun 2003 A1
20030127904 Due Jul 2003 A1
20030213482 Buser Nov 2003 A1
20030220060 Bures Nov 2003 A1
20040107584 Yoshida Jun 2004 A1
20040206220 Keenan Oct 2004 A1
20050088866 Levine Apr 2005 A1
20050103172 Bohne May 2005 A1
20050155233 Chen Jul 2005 A1
20050287938 Kodani Dec 2005 A1
20060005681 Lambert et al. Jan 2006 A1
20060019585 Zayat Jan 2006 A1
20060067798 Neumeier Mar 2006 A1
20060086350 Due Apr 2006 A1
20060107810 Chiu May 2006 A1
20060147266 Due Jul 2006 A1
20060266184 Hetcher Nov 2006 A1
20070017191 Miller Jan 2007 A1
20070017197 Miller et al. Jan 2007 A1
20070079589 Ekstrom et al. Apr 2007 A1
20070155296 Hofmann et al. Jul 2007 A1
20070178815 Buser Aug 2007 A1
20070193759 Sweig et al. Aug 2007 A1
20070226948 Due Oct 2007 A1
20070228805 Due Oct 2007 A1
20070251104 Heinrichs Nov 2007 A1
20080053282 Chen Mar 2008 A1
20080060631 Dofher Mar 2008 A1
20080099053 Loveless May 2008 A1
20080104936 Kellermann May 2008 A1
20080109986 Loveless May 2008 A1
20080110527 Kuo May 2008 A1
20080146125 Loveless Jun 2008 A1
20080163492 Johansson Jul 2008 A1
20080200103 Esenwein Aug 2008 A1
20080244910 Patel Oct 2008 A1
20080271323 Perlmutter Nov 2008 A1
20080276776 Kani Nov 2008 A1
20090181604 Loveless Jul 2009 A1
20090181605 Loveless Jul 2009 A1
20090181606 Loveless Jul 2009 A1
20090183377 Loveless Jul 2009 A1
20090183800 Loveless Jul 2009 A1
20090186559 Loveless Jul 2009 A1
20090241283 Loveless Oct 2009 A1
20090298403 Yamashiro Dec 2009 A1
20090311953 Maute et al. Dec 2009 A1
20100005619 Loveless Jan 2010 A1
20100058911 Goddard Mar 2010 A1
20100170538 Baker et al. Jul 2010 A1
20100242209 Beskow Sep 2010 A1
20100269353 Martin Oct 2010 A1
20100285729 Loveless Nov 2010 A1
20100313867 Loveless Dec 2010 A1
20110021121 Loveless Jan 2011 A1
20110185581 Xing et al. Aug 2011 A1
20110192262 Loveless Aug 2011 A1
20120084986 Klawitter Apr 2012 A1
20120121354 Dickey May 2012 A1
20120184193 Numata Jul 2012 A1
20120186520 Hill Jul 2012 A1
20130104714 Dammertz et al. May 2013 A1
20130198996 King Aug 2013 A1
20140215752 Loveless Aug 2014 A1
20140260848 Gantke et al. Sep 2014 A1
20140329447 Copeland Nov 2014 A1
20140352106 King Dec 2014 A1
20160031054 Chang Feb 2016 A1
20160184963 Melancon Jun 2016 A1
20160368166 Numata et al. Dec 2016 A1
20170144096 Chen May 2017 A1
20170225358 Carlsson Aug 2017 A1
20180009132 Merck Jan 2018 A1
20180071845 Hansen Mar 2018 A1
20180169885 Okouchi Jun 2018 A1
20180236574 Kume Aug 2018 A1
20190125153 Loveless May 2019 A1
20200122294 Loveless Apr 2020 A1
20200139508 Ohlendorf May 2020 A1
Foreign Referenced Citations (14)
Number Date Country
3811197 Oct 1989 DE
556713 Aug 1993 EP
0 579 964 Jan 1994 EP
2 260 721 Apr 1993 GB
2 262 159 Jun 1993 GB
02-122755 Feb 1990 JP
H 06-278103 Oct 1994 JP
10-000559 Jan 1998 JP
10-015717 Jan 1998 JP
2001-96525 Apr 2001 JP
3128896 Jan 2007 JP
2018187768 Nov 2018 JP
10-2002-0056086 Jul 2002 KR
WO 9944786 Sep 1999 WO
Non-Patent Literature Citations (1)
Entry
Bosch TG502 Tuck pointing grinder guard, accessed 2018, from Amazon.ca.
Related Publications (1)
Number Date Country
20200306849 A1 Oct 2020 US
Provisional Applications (1)
Number Date Country
62824406 Mar 2019 US