The present invention relates to a vise provided with a movable jaw device having separated approaching and clamping steps in a bending machine die.
The Applicant is the owner of the European patent No. EP 1 623 772 granted on 26 Mar. 2008, that discloses a vise for clamping an elongated workpiece to be bent on a bending machine die. The vise comprises a jaw being rotatable about a pivoting end so that the jaw is approachable to and removable from a circumferential groove of the die in order to surround, from opposite parts, an elongated workpiece. The movable jaw is rotated by an operation mechanism comprising a first hydraulic cylinder that is provided with a rack being connected to its cylinder rod, and a pinion being keyed to the movable jaw and meshing with the rack. Once the rotatable jaw has approached the elongated workpiece to be bent, a retaining device being operated by a second hydraulic cylinder is able to grip a jaw retaining end opposite to the jaw pivoting end in order to clamp the elongated workpiece to be bent in a closed position.
In the above cited European patent there are two separated steps, the one being an approaching step to, the other being a clamping step of an elongated workpiece to be bent in a pipe bending machine. This allows an elongated workpiece to be retained with a high reliability in bending operation. However, as the operation mechanism is fixed on a die side and the retaining device is fixed on the opposite die side, the vise is cumbersome especially in its part that is situated in the lower die side. This prevents some design choices to be made, and generally a pipe bending machine increases in size.
The present invention aims to overcome the drawback above mentioned.
In particular, a main object of the invention is to allow a die to be made having a gripping device of the workpiece to be bent, gripping device that operates with a jaw having two separated approaching and clamping steps, without requiring parts of the gripping device of the workpiece to be bent on both sides of the die.
The object is achieved by an invention that gives a vise provided with a movable jaw device having separated approaching and clamping steps in a bending machine die, wherein the movable jaw device comprises a body being fixed on the die and having two abreast supporting walls, on an external side of one of which said operation mechanism of the movable jaw is mounted, and upper edges of the supporting walls act as cams for opposite spindles laterally projecting like trunnions from said second hydraulic cylinder that is swing mounted by means of a connection of its cylinder rod with a small shaft being transversally pivoted in the movable jaw in a rear end thereof opposite to the front gripping end thereof, the upper edges of the supporting walls having two respective notches designed to receive the projecting spindles of said second hydraulic cylinder in such a way that the extension of the rod of the second hydraulic cylinder, being locked in position by its projecting spindles in the respective notches, keeps the movable jaw in closed position.
The present invention will be described with reference to a preferred embodiment thereof in connection with the accompanying drawing, in which:
With reference to the drawings,
In
A vise and a die in a second head, that is not engaged at the moment in a bending operation are indicated at 42 and 52, respectively.
Other reference numeral relating to other bending machine parts that are useless for understanding the present invention are not indicated in
The vise 4 has a body 6 with a fixed jaw portion 7 projecting downward. Conventionally, the fixed jaw portion 7, being located adjacent a circumferential half-cylindrical concave groove of the die, acts as an insert integral with the die. In
According to the present invention the body 6 of the vise 4 laying on the top of the die as shown in
In the operation mechanism 20 the rod 18 of the first hydraulic cylinder 19 has the slider 16 slidable along a cylinder axis in the prismatic guide 17 being connected to the external side of the supporting wall 8, and the rack member 15 that is laterally fixed to the slider 16, has a path parallel to the axis of the hydraulic cylinder 19.
The operation mechanism 20 serves to rotate the movable jaw device 10 in order to bring the movable jaw 11 near to the fixed jaw portion 7 and remove the one from the other. It should be evident that alternatively another operation mechanism, for example a worm screw, with an electric motor or other, could be used.
The movable jaw 11, which is provided with a partially elliptical external profile 21, has a front gripping end 22 having a concave half-cylindrical shape, which is of the same shape matching, in closed position, the half-cylindrical concave shape of the fixed jaw portion 7. A half-cylindrical hollow part 43 is inserted in the front gripping end 22, like that on the fixed jaw portion 7. The movable jaw has a convex centrally-lightened rear end 23 to obtain two rear side projections 24, 25 (
The spindles 29, 30 are similar to trunnions, and the supporting walls 8, 9 form a mount on which the hydraulic cylinder 28 can slide. The upper edges 31, 32 of the supporting walls 8, 9 have two correspondent notches 33, 34 opened ahead.
The spindle 30, the upper edge 32 and the notch 34 are shown in
The small shaft 26 being T-connected with the rod 27 of the second hydraulic cylinder 28, the same second hydraulic cylinder 28, together with the upper edges 31, 32 of the supporting walls 8, 9 form a clamping mechanism, as it will be evident in the following description. Reference is made now to
As show in
In particular, when the vise 4 is in its opened position, the front end of the rack member sights with a projection 40 thereof the first proximity sensor 37, and when the vise 4 is in its closed position, the proximity sensor 38 is sighted.
It is clear that such a position of simple closure does not allow the vise to retain the elongated workpiece to be bent, as the operation mechanism of the movable jaw is not able to withstand the stresses occurring in a bending operation. For this purpose there are the notches 33, 34 designed to receive the trunnion spindles 29, 30 projecting from the second hydraulic cylinder.
Reference is made to
One of the main advantages of the present embodiment of the vise according to the invention is that its size is very reduced. This is above all due to the fact that the movable jaw is optimally shaped and the cylinder of the clamping mechanism has no permanent fixing point but only an anchoring in the notches when a counteracting force is requested.
Further, the vise is comprised of a reduced number of parts, so that it can be assembled easily and is cheap. Its operation is quick. The vise can be easily adapted, by virtue of the inserts of the jaws, for bending elongated workpieces with a wide diameter range. Furthermore, the vise is made symmetrically and can be assembled for dies bending both in a direction and in the opposite direction. The vise is mounted on the dies by means of normal screws or by male-female coupling.
In the preceding description an exemplifying but not limiting embodiment of the invention has been given which is defined in the enclosed claims.
Number | Date | Country | Kind |
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RM 2008A000180 | Apr 2008 | IT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IT2009/000138 | 4/3/2009 | WO | 00 | 11/9/2010 |