The present invention relates to circular saw technology and more particularly, to an angle adjustment mechanism for a circular saw. Priority is claimed to Taiwan application Number 105142024, filed on Dec. 19, 2016, the entire disclosure of which is herein incorporated by reference.
Existing cutting tools (including a miter saw or table saw) commonly have an angle adjustment design for adjusting the cutting angle of the saw blade. Similar designs are seen in Taiwan Patent Numbers M343572, M320478 and 1490066. Although Taiwan Patent Numbers M343572, M320478 disclose adjustment of various cutting angles, these patents do not have a quick positioning design for the positioning of specific angles of high rate of use, or any specific angle for a batch of work pieces. Therefore, in the implementation of a specific angle of high rate of use, or any specific angle for a batch of work pieces, a certain adjustment time is needed to achieve the desired angle adjustment, therefore slowing the adjustment speed and affecting the processing efficiency.
The present invention has been developed in view of the above identified circumstances. It is one of the main objects of the present invention to provide an angle adjustment mechanism for a circular saw, which facilitates quick adjustment and positioning capabilities.
To achieve this and other objects of the present invention, an angle adjustment mechanism is used in a circular saw. The circular saw comprises a shoe, a bracket mounted to the shoe, an operating member slidably mounted to the bracket and a cutting unit pivotally mounted between the shoe and the operating member. The shoe comprises a bottom wall. The bracket comprises an arched guide slot which limits the rotation angle of the cutting unit relative to the shoe, and a series of scales (or graduations) arranged along one side of the arched guide slot. The angle adjustment mechanism comprises a positioning member and at least one limiting member, the positioning member has an abutting portion and is mounted to the cutting unit at one side relative to the bracket. Each limiting member is pivotally mounted to the bracket and has a stop member, the stop member is operable between a stopping position which protrudes from the bracket towards the positioning member, and a releasing position which is located away from the positioning member. The abutting portion of the positioning member is abuttingly positioned at the stop member when the stop member of the limiting member is located at the stopping position.
One of the improvements of the present invention is utilizing the cooperation between the positioning member and the limiting member, and utilizing the characteristic that the stop member of the limiting member is operable between a stopping position and a releasing position to enable the cutting unit to be quickly adjusted to a specific cutting angle. The angle adjustment mechanism has the characteristics of a simple structure and an ease of manufacturing and installation.
Other advantages and features of the present invention will be fully understood by reference to the following specification in conjunction with the accompanying drawings, in which like reference signs denote like components of structure.
Referring to
The shoe 1 comprises a bottom wall 101, a top wall 102 opposite to the bottom wall 101, an opening 103 cut through the bottom wall 101 and the top wall 102, and a lug 104 protruded from the top wall 102 at one side of the opening 103.
The bracket 2 is formed integral with the top wall 102 of the shoe 1 and disposed at an opposite side of the opening 103 to face toward the lug 104, comprising an inner wall 201 neighbored to the cutting unit 4, an opposing outer wall 202, a peripheral wall 203 connected between the inner wall 201 and the outer wall 202, a side face 204 connected between the inner wall 201, the outer wall 202 and the peripheral wall 203, a pivot axle 205 disposed adjacent to the top wall 102, an arched guide slot 206 extended around the pivot axle 205 for limiting the turning angle of the cutting unit 4 relative to the shoe 1, and graduations 207 arranged along one side of the arched guide slot 206. The arched guide slot 206 is disposed in communication between the inner wall 201 and the outer wall 202. The graduations 207 are located on the outer wall 202. In this embodiment, the graduations 207 are from 0 to 50 degrees with one at every 5 degrees, further, the maximum graduation value is 53 degrees.
The operating member 3 comprises a sliding rod 301 slidably inserted into the arched guide slot 206, a lever 302 connected to the sliding rod 301 and disposed outside the outer wall 202, and a lock member 303 fastened to the sliding rod 301. In this embodiment, the lock member 303 is a locknut for locking the sliding rod 301 to the arched guide slot 206 in the desired position.
The cutting unit 4 comprises a saw guard 401 pivotally connected between the shoe 1 and the bracket 2, a saw blade 402 pivotally mounted in the saw guard 401, and a driver 403 mounted at the saw guard 401 for driving the saw blade 402 to rotate. The saw guard 401 comprises a first lateral side 404, a second lateral side 405 opposite to the first lateral side 404, a pivot rod 406 located at one end thereof and pivotally coupled to the lug 104, and a fastener 407 located at an opposite end thereof. Further, the saw blade 402 is pivotally connected between the first lateral side 404 and the second lateral side 405.
The angle adjustment mechanism comprises a positioning member 10 and a limiting member 20.
The positioning member 10 is neighbored to (or near) the inner wall 201 at one lateral side relative to the bracket 2 and mounted to the cutting unit 4, comprising a main board 11 that faces toward the inner wall 201, a first locating board 12 interlinked with the main board 11 and affixed to the first lateral side 404, a second locating board 13 interlinked with the main board 11 and affixed to the second lateral side 405, an indicator 14 located at the main board 11 and protruded over the peripheral wall 203 and an abutting portion 15 disposed between the indicator 14 and the second locating board 13. By means of inserting the fastener 407 through the first locating board 12, the positioning member 10 is mounted to the saw guard 401.
The limiting member 20 is pivotally mounted to the side face 204 of the bracket 2, comprising a baffle 21 flatly attached to the side face 204 and an operating portion 22 interlinked with the baffle 21. The baffle 21 comprises a stop member 211, and a pivot connection portion 212 connected to the side face 204 with a screw 23.
Referring to
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Therefore, the present invention utilizes the mating relationship between the positioning member 10 and the limiting member 20, where one of the characteristics is that the limiting member 20 is pivotably mounted to the bracket 2 and that the positioning member 10 is mounted the cutting unit 4, enabling the cutting unit 4 to be quickly adjusted to a 45-degree cutting position for cutting for workpieces at a 45° angle.
Further, by means of the matching between the graduations 207 and the indicator 14 of the positioning member 10, adjustment of the contained angle θ between the saw blade 402 and the bottom wall 101 of the shoe 1 can be conveniently adjusted within the range of 0˜53°.
It should be noted that, in the above-described preferred embodiment of the present invention, only one limiting member 20 is provided for the most commonly used 45° cutting angle. If there are a plurality of cutting grooves (not shown) provided at the bracket and spaced from the peripheral wall 203 toward the pivot axle 205 and respectively disposed corresponding to more commonly used oblique cutting angles, for example, 15 degrees and 30 degrees, additional limiting members 20 can be used to be pivotally connected to each cutting groove, so that the operator can selectively bias one limiting member from the releasing position to the stopping position to achieve quick adjustment of one of a series of oblique cutting angles.
In general, the angle adjustment mechanism has the characteristics of a simple structure and ease of manufacturing and installation, and can accurately achieve the purposes of quick adjustment and positioning.
Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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105142024 | Dec 2016 | TW | national |