Field of the Invention
The subject matter disclosed herein relates generally to a work holding device, such as a vice or clamp, and, more particularly, to a portable work holding device configured to be removably mounted to a support, for example, a receiver hitch of a vehicle or a receiver or bracket on a support surface, such as a table or work bench.
Description of the Related Art
Bench vices are useful tools that are commonly used by workers and craftspersons. The bench vice is attached to a workbench where it provides a stable way to hold a work piece or other article. Attempts have been made in the past to attach a vise to work trucks or vehicles by taking an existing bench vise and mounting the bench vice to a platform or a pad on the vehicle. The platform or pad for attaching the vice on the vehicle may be less stable than is desired while working with the vice. The platform or pad may be in the way while seeking to carry materials and tools in the vehicle or while working out of the vehicle. While a vice which has been fastened to the platform or pad provides a portable work holding device, the additional size and weight of the vice with the platform may limit the portability of the conventional bench vise such that it is heavy and difficult to transport. Other attempts to make work holding devices more portable have resulted in a work holding device that is not as strong as a bench vice and so compromise the work holding capabilities of the work holding device. In both of these cases, an undesirable tradeoff is made for either portability or for function.
A portable work holding device has been developed that may be mounted in a receiver hitch on a vehicle to provide a stable and strong mount for the work holding device. Receiver portions of receiver hitches vary somewhat in size and shape so that the work holding device may not fit snuggly in the receiver hitch and so may rattle or be subject to movement. Some receiver portions of receiver hitches have an open end opposite the receiver opening, permitting moisture, dirt and debris to enter the receiver portion, and subjecting a hitch mounted work holding device to the moisture, dirt and debris which may enter the internal workings of the work holding device.
In one aspect, a work holding device includes an elongated connection member for connecting the work holding device to a support, such as a receiver portion of a receiver hitch on a vehicle or to a stationary receiver portion such as a work bench, wherein the elongated connection member includes at least one adjustable projection for stabilizing the work holding device in the receiver portion.
In another aspect, the work holding device includes an elongated connection member for connecting the work holding device to a support, such as a receiver portion of a receiver hitch on a vehicle or to a stationary receiver portion, wherein the elongated connection member includes a plurality of adjustable projections for stabilizing the work holding device in the receiver portion.
In yet another aspect, the work holding device includes an elongated connection member for connecting the work holding device to a support, such as a receiver portion of a receiver hitch on a vehicle or to a stationary receiver portion, wherein the elongated connection member includes an end cap.
The work holding device, in some embodiments, may include a first jaw piece having a first elongated connection member that defines a first passage. A second jaw piece has an elongated second connection member positionable within the first passage. The second connection member defines a second passage in communication with the first passage. A spindle assembly movably connects the second jaw piece to the first jaw piece. The spindle assembly is configured to move the second jaw piece with respect to the first jaw piece to create a clamping pressure when an object is placed between the first jaw piece and the second jaw piece.
In some embodiments, the portable work holding device includes a stationary first jaw piece having a casting and an elongated first connection member extending from the casting. The first connection member defines a first passage. A movable second jaw piece has an elongated second connection member extending from the second jaw piece. The second connection member is positionable within the first passage to couple the second jaw piece to the first jaw piece. The second connection member defines a second passage in communication with the first passage with the second connection member positioned within the first passage. A spindle assembly movably couples the second jaw piece to the first jaw piece. The spindle assembly includes a spindle nut positioned within at least the first passage. The spindle nut forms a helical thread on an inner surface of the spindle nut along at least a portion of a length of the spindle nut between a first end and a second end of the spindle nut. A spindle forms a helical thread on an outer surface of the spindle along at least a portion of a length of the spindle that cooperates with the helical thread formed on the inner surface of the spindle nut to facilitate translation of the second jaw piece with respect to the first jaw piece along an axis defined by the spindle.
In yet another embodiment, a portable work holding device assembly includes a work holding device and a plate assembly. The work holding device includes a first jaw piece having an elongated connection member for connecting the work holding device to a support, such as a receiver portion on a vehicle or on a work bench. The work holding device has a second jaw piece, and a spindle assembly movably connecting the second jaw piece to the first jaw piece. The spindle assembly includes a threaded spindle rotatable to move the second jaw piece with respect to the first jaw piece. The plate assembly includes a member having a plurality of walls defining a passage with a complementary cross-section to receive the first connection member. One or more brackets are coupled to a corresponding wall of the plurality of walls of the member. The one or more brackets each define one or more apertures to facilitate coupling the work holding device to a support surface.
In still another embodiment, a method of assembling a work holding device includes providing a stationary first jaw piece having a casting and an elongated first connection member extending from the casting, wherein the first connection member defines a first passage. An elongated second connection member of a movable second jaw piece is positioned within the first passage. The second connection member defines a second passage in communication with the first passage. A spindle assembly is positioned within the first passage and the second passage to movably couple the second jaw piece to the first jaw piece.
The embodiments described herein relate to a work holding device, such as a vice, that is capable of being quickly mounted to a vehicle using the receiver hitch of the vehicle as a connection point. The work holding device includes an elongated connection member that extends into the receiver portion of the receiver hitch. The elongated member includes at least one adjustable projection for selectively extending into contact with the receiver portion of the receiver hitch. The work holding device can instead be mounted to a bracket or other receiver member that is fixed to a suitable support surface, such as a table or a work bench, by inserting the elongated connection member of the work holding device into the bracket or other receiver member in the same manner as mounting the work holding device to the vehicle receiver hitch.
In one embodiment, the work holding device includes a fixed or stationary jaw piece, that includes a casting and the elongated connection member, and a movable jaw piece that is operatively connected to the stationary jaw piece by a spindle assembly that moves the movable jaw piece with respect to the stationary jaw piece to generate or create a pressure when an object is placed between the stationary jaw piece and the movable jaw piece. In one embodiment, the work holding device includes a handle having a single fixed arm that can be fixed or locked in a desired position, for example, in a twelve o'clock position, for storing the work holding device on the vehicle while the vehicle is being driven. In one embodiment, a recess is formed in the casting of the stationary jaw piece that allows for weight reduction, as well as a handle feature to facilitate portability. A work surface or an anvil is formed on at least the stationary jaw piece and is raised above the jaw pieces to create a more usable work surface while the work holding device is mounted to the vehicle.
An improvement of the work holding device provides one or more adjustable projections on the elongated connection member for adjusting the fit of the elongated connection member in the receiver member, as will be discussed herein after in conjunction with
Referring to
Referring further to
A movable second jaw piece 30 includes an elongated second connection member 32 extending from a first end of second jaw piece 30. The second connection member 32 is positionable at least partially within first passage 20 to couple the second jaw piece 30 to the first jaw piece 12. As shown in
In one embodiment, the work holding device 10 includes a spindle assembly 40 movably connecting the second jaw piece 30 to the first jaw piece 12. The spindle assembly 40 is configured to move the second jaw piece 30 with respect to the first jaw piece 12 to create a clamping pressure on an object when the object is placed between the first jaw piece 12 and the second jaw piece 30. For example, a work piece, such as a pipe, may be positioned within the pipe jaws 41, and the spindle assembly 40 moves the second jaw piece 30 with respect to the first jaw piece 12 to provide a suitable clamping pressure to maintain the work piece properly positioned between the pipe jaws 41. In one embodiment, the pipe jaws 41 are stepped to receive different sized pipes or objects.
The spindle assembly 40 includes a spindle nut 42 positioned within at least a first passage 20. With the second connection member 32 positioned within the first connection member 16, the spindle nut 42 extends through the first passage 20 and into the second passage 34, as shown in
The spindle assembly 40 also includes a spindle 52 operatively coupled to the spindle nut 42. A complementary helical thread 54 is formed on at least a portion of an outer surface 56 of the spindle 52 along a length of spindle 52 between a first end 58 and an opposing second end 60 of spindle 52. Helical thread 54 cooperates with the helical thread 44 formed on the inner surface 46 of the spindle nut 42 to facilitate translation of the second jaw piece 30 with respect to the first jaw piece 12 along an axis 62 defined along a length of the spindle 52, as shown in
In one embodiment, the spindle nut 42 forms one or more tabs 64 at first end 48 that interfere with a shoulder or ledge 66 formed on an inner surface 68 of the first connection member 16 to prevent decoupling of the second jaw piece 30 from the first jaw piece 12. In the exemplary embodiment, a continuous, circumferential tab 64 is formed around an outer surface 70 of the spindle nut 42. In alternative embodiments one or more discontinuous tabs 64 are formed on outer surface 70 of the spindle nut 42. Further, as shown in
In one embodiment, a stop block 74 is coupled to the first end 58 of the spindle 52. A stop block 74 is configured to allow the spindle 52 to move along the axis 62 within an intended travel range, while preventing the second jaw piece 30 from extending outside the intended travel range and decoupling from the first jaw piece 12. As shown in
As shown in
In one embodiment, the second end 60 of the spindle 52 has a rectangular, such as a square, cross-section. The handle 80 defines a corresponding void 88 having a complementary cross-section to receive the second end 60 of the spindle 52 to facilitate translation of the handle 80 between the first position and the second position, and to facilitate a torque transfer when the handle 80 is rotated about the axis 62 in the first position. As shown in
In a further embodiment, the socket head 82 defines a void 96, as shown in
As shown in
Referring now to
Referring now to
In one embodiment, member 124 is a square tube and bracket 130 includes two 1.25×1.25 angle iron pieces welded to corresponding walls 126 of member 124. The bracket 130 allows for work holding device 10 to be quickly moved from a vehicle receiver hitch 110 to a support 18 simply by pulling the pin, positioning the first connection member 16 within the member 124, and positioning the pin through an aperture 140 defined through the member 124, and the aligned aperture 26 of the first connection member and the aligned aperture 72 of the spindle nut 42. Further, a user has the option to couple the plate assembly 122 to a desired support 18, such as a work bench, and transport work holding device 10 to the worksite to utilize with the vehicle receiver hitch 110.
In one embodiment, a method of assembling a work holding device includes providing a stationary first jaw piece having a casting and an elongated first connection member extending from the casting. The first connection member defines a first passage. An elongated second connection member of a movable second jaw piece is positioned within the first passage to couple the second jaw piece to the first jaw piece. The second connection member defines a second passage in communication with the first passage. A spindle assembly is positioned within the first passage and the second passage to movably couple the second jaw piece to the first jaw piece. In a particular embodiment, positioning the spindle assembly within the first passage and the second passage includes positioning a spindle nut within at least the first passage. The spindle nut forms a helical thread on an inner surface of the spindle nut along at least a portion of a length of the spindle nut between a first end and a second end of the spindle nut. A spindle extends into the second connection member. The spindle forms a helical thread on an outer surface of the spindle along at least a portion of a length of the spindle that cooperates with the helical thread formed on the inner surface of the spindle nut to facilitate translation of the second jaw piece with respect to the first jaw piece along an axis defined by the spindle. The spindle is operatively coupled to the spindle nut. The method further includes providing one or more adjustable projections on the elongated first connection member.
In a further embodiment of the work holding member 150 as shown in
The adjustable set screws 164 permit the work holding device or vice 150 to fit snuggly into different hitch receivers that may have different internal size openings for receiving a hitch, or in this case the hitch mounted vice. By providing two set screws on each of two sides, vibration of the vice during driving can be eliminated by adjustment of the screws. As will be understood by those of skill in this art, the extent to which the set screws project from the shaft 152 is adjusted by the user prior to inserting the shaft 152 into the receiver member of the hitch. If the fit is too snug, the vice is removed from the hitch and the set screws 164 are adjusted further into the shaft 152. If the fit is too loose, the vice is removed from the hitch and the set screws 164 are adjusted to extend further from the shaft 152. The user is thereby able to get a custom, snug fit in the receiver member that may eliminate play and vibration between the hitch and the vice.
The set screws 164 have flat tops to bear against the insides of the hitch receiver when adjusted to extend from the shaft. Other configurations of set screws are also possible, included rounded or projecting top set screws. Other adjustable projections instead of the set screws are also possible, including the possibility of at least one adjustable projection or a plurality of fixed and/or adjustable projections. The projections may be adjusted directly, for example using a tool to adjust each screw, or may be adjusted indirectly.
In
Also visible in
The described assembly, device, and methods are not limited to the specific embodiments described herein. In addition, components of each assembly and/or device, and/or steps of each method may be practiced independent and separate from other components and method steps, respectively, described herein. Each component and method also can be used in combination with other assemblies, devices, and methods.
This written description uses examples to disclose the invention, including the best mode, and also to enable any person skilled in the art to practice the invention, including making and using any devices or systems and performing any incorporated methods. The patentable scope of the invention is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal language of the claims.
Although other modifications and changes may be suggested by those skilled in the art, it is the intention of the inventors to embody within the patent warranted hereon all changes and modifications as reasonably and properly come within the scope of their contribution to the art.
This application claims the benefit of U.S. Provisional Patent Application Ser. No. 61/826,818, filed May 23, 2013, which is incorporated herein by reference.
Number | Name | Date | Kind |
---|---|---|---|
196380 | Parker | Oct 1877 | A |
3206224 | Bock | Sep 1965 | A |
4040613 | Kartasuk | Aug 1977 | A |
D282143 | Tarquinio | Jan 1986 | S |
4659102 | Stuhrmann | Apr 1987 | A |
4807863 | Yang | Feb 1989 | A |
4885453 | Martin | Dec 1989 | A |
4971301 | Yang | Nov 1990 | A |
5433356 | Russell | Jul 1995 | A |
5522287 | Chiang | Jun 1996 | A |
5527146 | Allsop | Jun 1996 | A |
5658119 | Allsop | Aug 1997 | A |
5803941 | Berkhoel | Sep 1998 | A |
5881937 | Sadler | Mar 1999 | A |
5950617 | Lorenz | Sep 1999 | A |
6135435 | Schmitz | Oct 2000 | A |
7017898 | Varzino | Mar 2006 | B2 |
7036807 | Gasparyan | May 2006 | B1 |
7673861 | Meholovitch | Mar 2010 | B2 |
7775530 | Darling, III | Aug 2010 | B2 |
D652703 | Onello | Jan 2012 | S |
8109494 | Warth | Feb 2012 | B1 |
D680843 | Onello | Apr 2013 | S |
D707096 | Zhang | Jun 2014 | S |
20030201290 | Clausen | Oct 2003 | A1 |
20060049566 | Bernstein | Mar 2006 | A1 |
20070181624 | Smith | Aug 2007 | A1 |
20100072240 | Cornes | Mar 2010 | A1 |
20100283225 | Lahn | Nov 2010 | A1 |
20100320666 | Teo | Dec 2010 | A1 |
20120043711 | Schmidt | Feb 2012 | A1 |
20130127104 | Onello | May 2013 | A1 |
Number | Date | Country | |
---|---|---|---|
20140346725 A1 | Nov 2014 | US |
Number | Date | Country | |
---|---|---|---|
61826818 | May 2013 | US |