1. Field of Invention
The present invention relates to a punch and, more particularly, to a feeder for a punch.
2. Related Prior Art
Referring to
The present invention is therefore intended to obviate or at least alleviate the problems encountered in prior art.
According to the present invention, a feeder is provided for a punch. The feeder includes a feeding unit, a bending unit and a transferring unit. The feeding unit feeds a roll of a metal strip that includes a leading edge. The bending unit includes a plate for bending the metal strip, a sensor for generating at least one signal on detecting the arrival of the leading edge of the metal strip at the plate and a controller for actuating the plate on receiving the signal. The transferring unit transfers the metal strip to another unit of the punch.
An advantage of the feeder of the present invention is improved safety for an operator since the operator can stay away from the bending unit because of the automatic operation of the bending unit.
Another advantage of the feeder of the present invention is improved throughput due to the automatic operation of the bending unit.
Other advantages and features of the present invention will become apparent from the following description referring to the drawings.
The present invention will be described through detailed illustration of the preferred embodiment referring to the drawings.
Referring to
The feeding unit 10 includes a shaft 11 for rotation and a plurality of spoke-liked extenders 111 extensible from the shaft 11 to the roll of the metal strip 40. The shaft 11 rotates the roll of the metal strip 40 through the extenders 111. The feeding unit 10 includes a restraint 12, an abutting element 13 and a guiding element 14. The restraint 12, abutting element 13 and the guiding element 14 are conventional and will not be described in detail. The guiding element 14 guides the metal strip 40 to the bending unit 30.
The bending unit 30 includes a plate 33 for contact with the metal strip 40, an arm 32 for pivoting the plate 33 and a cylinder 321 for driving the arm 32. The plate 33 includes a first edge 331 and a second edge 332. The cylinder 321 may be hydraulic or pneumatic. The cylinder 321 may be replaced with an electrical mechanism.
The transferring unit 20 includes first pair of driving rollers 21, a second pair of driving rollers 22 and a group of flattening rollers 23.
The rotation of the feeding unit 10 and the pivoting of the bending unit 30 must be coordinated. The rotation of the feeding unit 10 is controlled manually. The pivoting of the bending unit 30 is controlled automatically. To this end, a sensor 34 and a controller 31 are used. The sensor 34 is attached to the plate 33 near the second edge 332. The sensor 34 is preferably embedded in the plate 33 for protection from the leading edge 41 of the metal strip 40. The controller 31 is electrically connected to the sensor 34 on one hand and operatively connected to the cylinder 321 on the other hand. The controller 31 receives signals from the sensor 34 and accordingly actuates the cylinder 321. The pivoting of the bending unit 30 is conducted at two steps.
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When a tail edge of the metal strip 40 moves beyond the sensor 34, the sensor 34 detects the departure and sends a signal to the controller 31 that in turn actuates the cylinder 321 in an opposite direction. The arm 32 returns the plate 33 to its original position.
The feeder of the present invention exhibits at least two advantages. Firstly, for the automatic operation of the bending unit 30, an operator can stay away from the bending unit 30 so that the operator operates the feeder of the present invention safer than he or she does a conventional feeder. Secondly, for the automatic operation of the bending unit 30, the throughput of the feeder of the present invention is faster than that of a conventional feeder.
The present invention has been described through the illustration of the preferred embodiment. Those skilled in the art can derive variations from the preferred embodiment without departing from the scope of the present invention. Therefore, the preferred embodiment shall not limit the scope of the present invention defined in the claims.