The field to which the disclosure generally relates to includes pin clamping devices and methods of making and using the same.
A pin clamping device may be used to locate and clamp a workpiece.
A number of variations may include a pin clamping device having a clamp hook connected to an actuator constructed and arranged to apply at least a downward force to the clamp hook and a biasing system constructed and arranged to apply an upward force to the clamp hook while a downward force is being applied to the clamp hook by the actuator.
A number of variations may include a pin clamping device having a location pin constructed and arranged to move as the clamping device clamps onto a workpiece.
A number of variations may include an adjustable pin clamping device comprising a location pin constructed and arranged to slidably move in a through-hole of a base constructed and arranged to support a workpiece.
A number of variations may include an adjustable pin clamping device including a location pin having a shaft extending through a through-hole in a base, the base having a platform constructed and arranged to support a workpiece, and wherein the location pin is biased upward.
Other illustrative variations within the scope of the invention will become apparent from the detailed description provided hereinafter. It should be understood that the detailed description and specific examples, while disclosing variations within the scope of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
Select examples of variations within the scope of the invention will become more fully understood from the detailed description and the accompanying drawings, wherein:
The following description of the variations is merely illustrative in nature and is in no way intended to limit the scope of the invention, its application, or uses.
Referring now to
The through-hole 21 in the first portion 23 of the base 20 may be defined by an inner cylindrical wall 80 which is connected to a radially outward extending step 82 that connects to a second cylindrical wall 84 formed in the collar portion 24. The location pin 12 may include a flange portion 86 that may extend radially outward so that at least a portion of the flange portion 84 is received in a collar cavity 85 which may be defined at least in part by the second cylindrical wall 84 and the radially outward extending step 82. The location pin 12 may include a shaft 88 connecting the flange portion 86 to a cone-shaped tip 90. The shaft 88 of the location pin 12 may slidably move in the through-hole 21 formed in the first portion 23 of the base 20.
In a number of variations, a lower end of the piston rod 50 may be threaded 92 and a nut 94 may be secured to the threaded end on one side of the piston 40. On the other side of the piston 40, a washer 112 may be positioned on the piston 40 and receive the piston rod 50. A guide bushing 114 may be provided and secured in the body 26 and a seal 116 provided above the guide bushing with the piston rod 50 extending through each.
A cap 96 may be provided and secured to the body 26. In a number of variations, the body 26 may include a neck 98 which may be threaded from mating with a threaded throat portion 100 of the cap 96. A gasket 101 may be provided at the end 99 of the neck 98 of the body 26 and may engage a gasket seat 103 provided in the cap 96. In a number of variations, the cap 96 may have a first air port 102 formed therein which communicates with a first channel 106 formed in the body and communicating with an upper portion 107 of the piston chamber 42 which is above the piston 40. Optionally, a second air port 104 may be provided in the cap 96 and communicate with a second air channel 108 formed in the body which also communicates with the upper portion 107 of the piston chamber 42. A third air port 106 may be provided in the cap and constructed and arranged to communicate with a lower portion 109 of the piston chamber 42 which is below the piston 40. In a number of variations, the air ports 102, 104 and 106 may be connected to air lines which may each have a valve therein to control the flow of air to be provided into the piston chamber 42 through air port 106 to move the piston 40 upward and thereby move the clamping hook 18 in an upward direction. Similarly, air may be provided through one of the air ports 102 or 104 to provide air above the piston and push the piston in a downward direction, causing the clamping hook 18 to also move in a downward direction.
Referring now to
Referring again to
In a number of variation, an adjustable pin clamping device 10 may be constructed and arranged so that there is an upward biasing force on the location pin 12 or clamping hook 18 by any of a pneumatic, hydraulic, mechanical, electromechanical components which may apply the upward biasing force directly to the clamping hook 18 or indirectly, for example through the location pin 12. In a number of variations the claiming hook 18 may be moved upward and downward by any of a variety of components including, but not limited to, a pneumatic, hydraulic, mechanical, electromechanical components. For example, but not limited to, a steeper motor or magnetic coil device may be used to move the clamping hook 18 upward or downward. As described above at some point during the downward movement of the claiming hook 18 the downward movement is made against the upward biasing force applied directly or indirectly to the clamping hook 18 so that workpieces of varying thicknesses can be clamped down on the base 20.
In a number of variations, a threaded connector 140 may be secured to a threaded end of the piston rod 50 (
Referring again to
A number of variations may include a method of clamping a workpiece including providing an adjustable pin clamping device and a workpiece to be clamped in position by the adjustable pin claiming device, wherein the adjustable pin clamping device includes a clamp hook received in a location pin, the locating pin having a window formed in a wall thereof and wherein the clamp hook may be constructed and arranged to extend out the window. The method may include placing a first workpiece on the location pin and applying a first force to move the clamp hook in an upward direction, applying a second force to the clamp hook to extend the clamp hook out of the window in the location pin and in a downward direction toward the first workpiece and applying a third force to the clamp hook in an upward direction while the second force is being applied to the clamp hook, wherein the second force is greater than the third force so that the second force causes the clamp hook to clamp the first workpiece, which may occur without denting the first workpiece. The method may also include thereafter applying the first force to move the clamp hook in an upward direction, removing the first workpiece from the adjustable pin clamping device, and placing a second work piece on the location pin, applying the second force to the clamp hook to extend the clamp hook out of the window in the location pin and in a downward direction toward the second workpiece and applying a third force to the clamp hook in an upward direction while the second force is being applied to the clamp hook, wherein the second force is greater than the third force so that the second force causes the clamp hook to clamp the second workpiece, which may occur without denting the second workpiece, and wherein the first workpiece and second workpiece have different thicknesses where they are clamped by the clamp hook. In a number of variations the method may include applying the third force to the clamp hook directly. In a number of variations the method may include applying the third force to the clamp hook indirectly through the location pin. In a number of variations the method may include applying the third force to the clamp hook indirectly through the location pin mechanically connected to the clamp hook. In a number of variations the method may include applying the third force to the clamp hook indirectly through the location pin mechanically connected to the clamp hook by a guide pin extending from the location pin and received in a slot formed in the clamp hook. In a number of variations the adjustable pin clamping device may include at least one spring constructed and arranged to apply the third force to the clamp hook. In a number of variations the at least one spring is constructed and arranged so that the guide pin engages the clamp hook at the upper end of the slot to apply an upward force to the clamp hook.
The above description of select variations within the scope of the invention is merely illustrative in nature and, thus, variations or variants thereof are not to be regarded as a departure from the spirit and scope of the invention.