The present invention relates to a pressing machine having a die-cushion device.
A die-cushion device has been used in drawing-forming a workpiece with a pressing machine. The die-cushion device includes: a blank holder holding a workpiece against an upper die; a die-cushion pad for supporting the blank holder via a cushion pin; and a driving means for driving the die-cushion pad to be lifted in synchronization with a movement of a slide (see, for example, Patent Document 1).
[Patent Document 1] JP-A-10-202327
A lower die used in the pressing machine is attached to a platen-like bolster. However, a central part of the bolster may be slightly flexed downwardly due to a load applied during a forming operation. The flexure of the bolster has been a problem for conducting a highly accurate forming.
The problem is attributed to a structure of a bed on which the bolster is mounted. Specifically, the bed defines a space at a lower portion of the bolster in which a die-cushion pad of the die-cushion device is lifted up and down, so that no support is provided to a central part of a lower surface of the bolster.
The problem can be solved by providing, for example, a rib of a cross shape in plan view so as to partition the space of the bed, and arranging the bolster to be supported by an upper surface of the rib. In such an arrangement, however, since the die-cushion pad needs to be divided into four parts to be cross-shaped in order to avoid interfering with the rib, the arrangement may become complicated. Further, since each of divided pad parts is easily deformed by the load applied during the forming operation, the die-cushion pad may not be smoothly lifted down.
An object of the present invention is to provide a pressing machine having a die-cushion device that can simplify an arrangement and prevent the bolster from being flexed, whereby a press forming operation of a high accuracy can be realized.
A pressing machine having a die-cushion device according to an aspect of the present invention includes: a bed on which the die-cushion device is provided; and a bolster provided on the bed, in which the bed has an inner space in which a die-cushion pad of the die-cushion device is lifted up and down, and a supporting portion penetrating the die-cushion pad in a lifting direction and supporting a lower surface of the bolster is provided in the inner space.
According to the aspect of the present invention, since the bolster is supported by the supporting portion, the bolster can be prevented from being flexed during the press forming operation, whereby a press forming operation of a high accuracy can be realized. In addition, since the supporting portion penetrates the die-cushion pad of the die cushion device, unlike the related arts, the die-cushion pad does not need to be divided, whereby a complication of the arrangement can be avoided.
In the pressing machine having a die-cushion device according to the aspect of the present invention, it is preferable that the supporting portion is provided at a position corresponding to a center of the lower surface of the bolster.
According to the aspect of the present invention, since the supporting portion is positioned at the center of the lower portion of the bolster, the center region of the bolster, which is the most vulnerable to flexure, can be effectively supported.
In the pressing machine having a die-cushion device according to the aspect of the present invention, it is preferable that a moving bolster is provided by the bolster and a carrier, the carrier being moved with the bolster mounted on, and the supporting portion supports the bolster via the carrier.
According to the aspect of the present invention, since the supporting portion supports the bolster via the carrier of the bolster, the supporting portion does not interfere with the carrier when the moving bolster is moved for replacing a die.
In the pressing machine having a die-cushion device according to the aspect of the present invention, it is preferable that the carrier includes a frame and a rib traversing an inner space of the frame, and the supporting portion supports the bolster via the rib.
According to the aspect of the present invention, since a portion supported by the supporting portion is provided with the rib reinforcing the frame, the frame is also prevented from being flexed during the press forming operation, whereby a press forming operation of a high accuracy can be reliably realized.
1: pressing machine;
5: moving bolster;
6: bed;
10: die-cushion device;
13: die-cushion pad;
51: bolster;
52: carrier;
53: inner space;
54: rib;
55: frame;
61: inner space; and
63: supporting portion.
An embodiment of the present invention will be described below with reference to the attached drawings.
The pressing machine 1 includes: a crown 2 having a built-in driving force transmission mechanism such as a crank mechanism, eccentric mechanism and link mechanism; a slide 4 connected to the driving force transmission mechanism inside the crown 2 via four plungers 3 (
As shown in
On the other hand, as shown in
Specifically, the supporting portion 63 is erected to penetrate the die-cushion pad 13, and an upper end surface 63A of the supporting portion 63 is formed to be flush with the mounting surface of the moving bolster 5 with the bed 6. The supporting portion 63 abuts from below on a cross portion of the rib 54 provided on the frame 55 of the carrier 52. In short, the supporting portion 63 supports the center of the lower surface of the bolster 51 via the rib 54 of the frame 55. With this arrangement, the frame 55 is reinforced by the rib 54 and the bolster 51 is prevented from being flexed during a press forming operation, whereby a press forming operation of a high accuracy can be realized. Size of the cross portion of the supporting portion 63 is determined based on, for instance, a forming load applied by the pressing machine 1, such that a flexure of the bolster 51 can be effectively prevented.
In the present embodiment, the moving means of the moving bolster 5 moves the bolster 51 as well as the carrier 52 to the outside the pressing machine 1, such that the die replacement is performed. However, since the supporting portion 63 does not protrude from an upper side of the bed 6, the supporting portion 63 does not interfere with the carrier 52. Accordingly, the moving bolster 5 can be moved smoothly.
Referring back to
As shown in
In short, unlike related arts, the die-cushion pad 13 is not divided into a plurality of parts, and the die-cushion pad 13 is lifted up and down with the supporting portion 63 penetrating the die-cushion pad 13. Accordingly, as compared with the related arts where the die-cushion pad is divided, the die-cushion pad 13 can be simply arranged. In addition, since a single large die-cushion pad 13 is employed, a deformation or the like of the die cushion 13 can be prevented in the press forming operation. Thus, the die-cushion pad 13 can be advantageously used in a press forming operation of a higher accuracy.
Guide plates 18 are provided on four circumferential lateral surfaces of the die-cushion pad 13. The guide plates 18 face guide plates 64 provided on inner walls of the inner space 61 of the bed 6, as shown in
As shown in
In the pressing machine I according to the present embodiment, where four plungers 3 are provided (four-point type machine), four of the driving means 14 are provided corresponding to each of the points. A rotation of each of the servo motors 24 is individually controlled by a controller. A rotation shaft of the servo motor 24 of the driving means 14 is forward-reverse rotated when electricity is supplied. Supplied with electricity, the rotation shaft of the servo motor 24 is rotated, and the drive-side pulley 23, the driven-side pulley 22 and ball screw portion 20 are rotated. In accordance with the rotation movement of the ball screw portion 20, the nut portion 19 is linearly moved in the lifting direction. Consequently, the die-cushion pad 13 is lifted up and down in conjunction with the nut portion 19. A cushion pressure (biasing force) applied to the die-cushion pad 13 is controlled by controlling the electric current supplied to the servo motor 24.
According to the present embodiment, as described above, since the bolster 51 is supported by the supporting portion 63 via the carrier 52, the bolster 51 can be prevented from being flexed during the press forming operation, whereby a press forming operation of a high accuracy can be realized. In addition, since the supporting portion 63 penetrates the die-cushion pad 13, unlike the related arts, the die-cushion pad 13 does not need to be divided, whereby a complication of the arrangement can be avoided. Since the supporting portion 63 is positioned at the center of the lower portion of the bolster 51, the center region of the bolster 51, which is the most vulnerable to flexure, can be effectively supported.
Incidentally, the present invention is not limited to the embodiment described above, but includes other arrangements as long as an object of the present invention can be achieved, which includes the following modification.
For example, in the above-described embodiment, although the supporting portion 63 is cross-shaped in plan view, the shape is not limited thereto. The supporting portion 63 may be of any shape such as H-shape or tubular shape.
In the above-described embodiment, although a single supporting portion 63 is provided, the supporting portion 63 may be provided in plurality, and the number may be arbitrarily determined. Accordingly, the supporting portion may be provided with the number being equivalent to the number of the points.
When a plurality of supporting portions are provided, supporting positions of the supporting portions may be determined considering the number of the supporting portions.
In the above-described embodiment, the die-cushion pad 13 is driven by the servo motor 24, but the die-cushion pad 13 may be driven by a hydraulic actuator, pneumatic actuator and any driving source.
The number of the driving means 14 may be determined in any manner, which does not need to be equivalent to the number of the points.
Although the best arrangement and method for implementing the present invention has been disclosed above, the present invention is not limited thereto. In other words, while the present invention has been described with reference to the specific embodiments and the drawings thereof, various modifications may be made to the disclosed embodiments by those of ordinary skill in the art without departing from the spirit and scope of the invention.
Therefore, the description that limits the shape and the material, especially of the supporting portion 63, is only an example to make the invention easily understood, but is not intended to limit the invention, so that the invention includes the description using a name of component without a part of or all of the limitation on the shape and the material etc.
The present invention is applicable to a pressing machine equipped with a die-cushion device having a die-cushion pad.
Number | Date | Country | Kind |
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2005-006794 | Jan 2005 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2006/300289 | 1/12/2006 | WO | 00 | 7/9/2007 |