Abstract:
A pin clamp assembly having a body, a locating pin, an actuator, a drive rod, a cam, and a finger is provided. The locating pin is coupled to the body and movable between extended and retracted positions. The drive rod is movable relative to the locating pin. The cam is movable relative to the locating pin and the drive rod. The finger is coupled to the drive rod and movable between extended and retracted positions. Actuation of the actuator causes the drive rod to move which extends the finger without moving the locating pin. Also, continued retraction of the drive rod after the finger has extended causes the cam to move out from the slot in the body to allow the locating pin to retract.
Abstract:
An armover clamp assembly having a housing, an actuator, a cam, a first link, a pivot pin, a driver, a rotating pin, and an arm is disclosed The cam having a cam slot attaches to the actuator for linear movement inside the housing A cam path of the cam slot has locking and extended portions A cam pin that follows the cam path couples the first link to the cam slot The pivot pin having pivotally attached dπver is coupled to the first link away from where the cam pin and link are coupled The rotating pin, which attaches to the arm exteπor of the housing, attaches to the driver inside the housing away from the pivot pin Upon actuator linear movement the cam causes the cam pin to travel along the cam path to move the first link and the dπver via the pivot pin causing rotating pin rotation.
Abstract:
An armover clamp assembly having a housing, an actuator, a cam, a first link, a pivot pin, a driver, a rotating pin, and an arm is disclosed. The cam having a cam slot attaches to the actuator for linear movement inside the housing. A cam path of the cam slot has locking and extended portions. A cam pin that follows the cam path couples the first link to the cam slot. The pivot pin having pivotally attached driver is coupled to the first link away from where the cam pin and link are coupled. The rotating pin, which attaches to the arm exterior of the housing, attaches to the driver inside the housing away from the pivot pin. Upon actuator linear movement the cam causes the cam pin to travel along the cam path to move the first link and the driver via the pivot pin causing rotating pin rotation.
Abstract:
A pin clamp assembly is provided. The assembly includes a housing, a locating pin, a body, and first and second locks. The locating pin extends from the housing. The body extends from the locating pin. At least a portion of the body is located interior of the housing. The body and locating pin are movable with respect to the housing. The first lock is located on the body and the second lock is configured to selectively couple with the first lock. Selective coupling of the locks prevent the body from moving.
Abstract:
A pin clamp assembly (2)having a housing (4), locating pin (6), at least one finger (8), a drive rod (66) and an actuator(46) is provided. At least a portion of the locating pin (6)may be extendable exterior of the housing (4). The finger (8) is located adjacent the locating pin (6)and movable relative thereto. The drive rod (66) is movable and is engagable with the finger (8) to move the finger (8) between clamped and undamped positions. The actuator (46) drives the locating pin (6) and the drive rod (66). Movement of the locating pin (6) and drive rod (66) is linear only and no rotational movement of the locating pin (6) and drive rod (66) is employed to move the finger (8) between clamped and undamped positions.
Abstract:
A pin clamp transfer assembly may provide first and second pin clamps. The first pin clamp has a pin that extends from a body with a first end located distal from the body. The second pin clamp also has a pin that extends from a body with a second end located distal from the body. The first end of the first pin is engagable with the second end of the second pin to align the first and second pins. A pin clamp transfer assembly may alternatively have a pin clamp assembly that includes a transfer assist to move a workpiece relative to the pin clamp's pin.
Abstract:
The present disclosure provides a pin clamp (2) having first (6), second (66), and third pins (104), a finger (8) and stripper assembly (102). The first pin (6) moves in response to an actuation. At least one finger (8) is positioned adjacent the first pin (6), and is movable between clamped and undamped positions. The second pin (66) is located adjacent the first pin (6) and is in operable communication with the finger (8). The stripper assembly (102) comprises the third pin (104) that is selectively engageable with the second pin (66), and an actuator (32) that moves the third pin (104).
Abstract:
Pin clamp assembly having a driver, a body, an actuator, a locating pin and at least one finger is provided. The body receives at least a portion of the driver. The actuator assembly moves the driver linearly. The locating pin has a longitudinal extent or axis and receives at least a portion of the finger. At least a portion of the finger is locatable in the locating pin and at least a portion is selectively extendable therefrom. The finger is linearly movable between extended and retracted positions.
Abstract:
A clamp having an adjustable tip assembly is provided. The adjustable tip assembly includes a finger, wedge and spreader. The finger is configured to engage the workpiece. The wedge is configured to engage the finger. The spreader is configured to engage the wedge, and applies a force against the wedge. The wedge, in turn, applies a force against the finger to hold the finger while engaging the workpiece.
Abstract:
A clamp having an adjustable tip assembly is provided. The adjustable tip assembly includes a finger, wedge and spreader. The finger is configured to engage the workpiece. The wedge is configured to engage the finger. The spreader is configured to engage the wedge, and applies a force against the wedge. The wedge, in turn, applies a force against the finger to hold the finger while engaging the workpiece.