1. Field of the Invention
The present invention relates generally to vises and clamping tools used to temporarily hold a workpiece in place. More specifically, the present invention includes a power vise using either an electric motor or a hydraulic ram to move the jaws.
2. Description of the Related Art
Vises and similar clamping tools have been known and used for generations for temporarily holding a workpiece in place to allow a worker to use both hands in performing the necessary work. Generally, such devices are manually actuated, with no power being provided for the opening and closing of the jaws. The mechanical advantage provided by the advance screw pitch in a conventional vise is sufficient to provide more than adequate clamping pressure in virtually all circumstances, so the use of power to actuate the vise is generally not due to a need for additional force.
However, oftentimes a worker must assemble or manipulate multiple part assemblies, and it can be cumbersome to hold the various parts in precisely the proper relationship to one another while simultaneously attempting to manually close the jaws on the vise to secure the parts.
A number of variations and improvements on the conventional vise configuration have been developed over the years. An example of such is found in Japanese Patent Publication No. 55-65,043 published on May 16, 1980. This device comprises (according to the drawings and English abstract) a machinist's vise having a separate bed or body to hold a frame, which in turn holds the fixed and adjustably positionable jaws of the vise. The object is to enable high pressures to be developed across the jaws without misaligning the jaws.
However, the above patent does not disclose the present invention as claimed. Thus, a power vise solving the aforementioned problems is desired.
The present invention comprises various embodiments of a power vise in which a supplementary power source (e.g., electric, hydraulic, etc.) is used to open and close the jaws. All embodiments may be actuated by a remote control of some sort, e.g., a foot pedal or the like, so the operator may have both hands free to hold the workpiece as it is placed in or removed from the vise. All embodiments may also include a mechanism for regulating the pressure developed between the jaws.
A first embodiment of the power vise is an electrically operated vise, e.g., bench vise, machine vise, etc. The output shaft of an electric motor is connected to the advance screw of the vise to turn the screw and close or open the vise jaws. A mechanical clutch may be placed between the motor and advance screw. The motor assembly may drive either end of the advance screw. The motor may be controlled by a remote foot pedal or the like.
A second embodiment of the power vise has a hydraulic ram, with a first jaw affixed to the hydraulic cylinder and a second jaw affixed to the piston rod of the hydraulic ram. Hydraulic pressure is used to retract and extend the piston rod, thereby closing and opening the jaws relative to one another. Jaw pressure or force may be regulated by controlling the hydraulic pressure, and a remote control for actuating the device may be provided.
These and other features of the present invention will become readily apparent upon further review of the following specification and drawings.
Similar reference characters denote corresponding features consistently throughout the attached drawings.
The present invention comprises various embodiments of a power vise in which a power source is connected to at least one of the vise jaws to drive the vise jaw. The vise may be screw-actuated, as in the case of a bench vise or the like, or hydraulically actuated, as desired. Electric or hydraulic power may be used to drive the driven jaw of the vise, and a force limiting mechanism may be provided between the power source and the driven jaw of the vise.
A movable jaw 18 is affixed to a slide 20, which slides through the vise body 12 to open and close the jaws 14 and 18 relative to one another. The movable jaw 18 and slide 20 are actuated by a linear actuator, with the linear actuator comprising an advance or lead screw 22. The advance screw 22 includes a first end 24 affixed to the base of the moving jaw 18 but rotating therein, and an opposite second end 26 captured within the opposite distal end of the slide 20. The advance screw 22 threads through a block 28, which is a part of the base 12, to draw the slide 20 through the base 12 and advance the moving jaw 18 toward or away from the fixed jaw 14, depending upon the direction of rotation of the advance screw 22.
The above-described bench vise construction is generally conventional. However, the power vise 10 further provides a power source for rotating the advance screw 22, rather than requiring the screw 22 to be turned by hand, as in a conventional vise. In the embodiment of
A pair of cheek plates 50 extend from the motor 30, or more specifically from the gearbox 34, and are affixed to the movable jaw end of the slide 20. The clutch 36 may have adjustable pressure settings to regulate the amount of torque applied to the advance screw 22. Accordingly, when torque is applied to the advance screw 22 by actuation of the motor 30, gearbox 34, and clutch 36, the motor 30 and gearbox 34 cannot rotate with the advance screw 22, as the cheek plates 50 affix them to the non-rotating slide 20.
The use of a power driver, e.g., motor 30, gearbox 34, and force regulating clutch 36 for the vise advance screw 22 frees the user of the power vise 10 from the need to crank the conventional advance screw handle to close or open the vise jaws. Accordingly, the power driver may be provided with a remote control of some type, if so desired, enabling the user to have both hands free to manipulate a workpiece or workpieces within the vise jaws, if so desired. In the example of
The above described assembly may be secured to any suitable fixed or mobile base, e.g., the bed wall of a pickup truck, as shown in broken lines in
The valve 124 may be selectively controlled to route hydraulic fluid under pressure to either end 106 or 110 of the vise body cylinder 102. When the valve 124 is manipulated to route hydraulic fluid under pressure to the strut extension end 106 of the cylinder, high pressure hydraulic fluid passes through the hydraulic line 128 extending between the selector valve 124 and the strut extension end 106 of the cylinder 102. This pushes the conventional internal piston of the rod 104 toward the opposite closed end 110 of the cylinder 102, thus drawing the moving jaw 114 toward the fixed jaw 108 to secure a workpiece therebetween. Hydraulic fluid captured between the internal piston of the rod 104 and the closed end 110 of the cylinder 102 is returned via the hydraulic line 130 extending between the closed end of the cylinder and the selector valve 124, thence to a return line 132 and reservoir 134 disposed between the selector valve 124 and pump 120.
When the moving jaw 114 of the hydraulically powered vise 100 is to be extended away from the fixed jaw 108, the selector valve 124 is manipulated to route high pressure fluid through the hydraulic line 130, thereby extending the strut or rod 104 from the cylinder 102. Fluid between the piston and the strut extension end 106 of the cylinder passes back to the reservoir 134 via the hydraulic line 128 from the strut extension end 106 of the cylinder to the selector valve 124, and thence back to the pump 120 via the reservoir 134 for recirculation.
It will be understood that the selector valve 124 may include either a hand-actuated lever 136, as shown in
In conclusion, the power vise in its various embodiments will be greatly appreciated by mechanics, craftsmen, and others who have occasion to use a vise or the like to temporarily secure one or more workpieces. The remotely actuated operation of the power vise, in either its electrically or hydraulically powered configurations, greatly facilitates the manipulation of a workpiece, or multiple workpieces, within the vise, leaving both of the user's hands free to handle the workpiece or workpieces. The power vise in its various embodiments is well suited for fixed installation in a shop or similar environment, but is equally well suited for mobile installation upon a suitable vehicle. Accordingly, the versatility of the operating systems employed by the power vise will prove to be a most valuable feature of the device.
It is to be understood that the present invention is not limited to the embodiments described above, but encompasses any and all embodiments within the scope of the following claims.
This application claims the benefit of U.S. Provisional Patent Application Ser. No. 60/696,800, filed Jul. 7, 2005.
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Number | Date | Country | |
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20070007704 A1 | Jan 2007 | US |
Number | Date | Country | |
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60696800 | Jul 2005 | US |