Device for judging collision of a die cushion mechanism and system for judging collision
A device (110) for judging the collision of a slide (24) with a die cushion in a die cushion mechanism (20) which produces a force against the slide in a press machine using a servo motor (18) as a drive source, comprising force detection means (21) for detecting a force produced between the die cushion and the slide; and comparator means (95) for comparing a force detection value (Fd) detected by the force detection means with a predetermined threshold value (L1); wherein, when the force detection value becomes greater than the threshold value, it is so judged that the slide has come into collision with the die cushion. Thus, the collision is judged within a short period of time and reliably. The collision may be judged by comparing differentiated values (Fd′, Fd″) of the force detection value, slide position detection value (Y1d) or slide position instruction value (Y1c) or other related threshold values. There can be further used a system for judging a collision which executes a plurality of methods for judging the collision.
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1. Field of the Invention
The present invention relates to a device for judging the collision of a slide with a die cushion in a die cushion mechanism and a system for judging the collision.
2. Description of the Related Art
In a press machine for effecting press work such as bending, drawing or punching, it is a known practice to install a die cushion mechanism as an accessory unit for applying a predetermined force (pressure) from the side of a support member (usually called bolster) that supports a second mold to another support member (usually called slide) of the moving side that supports a first mold used for the press work during the working operation. The die cushion mechanism is usually so constituted that a cushion pad moves together with a slide while applying a force (pressure) to the slide after the slide (or the first mold) moving in a direction of closing the mold is brought into direct or indirect collision with a moving element (usually called cushion pad) and is held with a predetermined pressure until the mold is opened after the mold is closed (molding). During this period, the peripheral region of a working portion of a material to be worked is held between the cushion pad and the slide to prevent the occurrence of wrinkles in the material to be worked.
Here, the slide in the die cushion mechanism at first stands by at its upper-limit position. In the initial period of the sliding operation, the position control speed instruction value Vcx is greater than the force control speed instruction value Vcf. Therefore, due to the switch 930, the die cushion starts moving down based on the position control speed instruction value Vcx fed from the position control unit 920. The comparison processing by the comparison operation unit 950 is repetitively executed while the slide is moving down. When the force control speed instruction value Vcf becomes greater than the position control speed instruction value Vcx, it is so judged that the slide has come into collision with the die cushion, and the position control unit 920 is switched over to the force control unit 940 by the switch 930. Therefore, the die cushion moves down based on the force control speed instruction value Vcf of the force control unit 940 to produce a suitable cushion pressure.
Here, when the slide is going to come into collision with the die cushion, the slide, first, comes into contact with a cushion pin whereby the slide and a cushion pad move down integrally and together. When the force of the cushion pad acting on the damper increases, the cushion pin further moves down, and the bolster of the die cushion comes into collision with the slide via their respective molds.
Therefore, while the slide is moving down together with the cushion pad, an extended period of time is required for forming the force control speed instruction value Vcf and the position control speed instruction value Vcx, and it becomes difficult to quickly judge the collision by comparing them. As a result, a very extended period of time is often required until the collision is judged after the collision has actually occurred. Such a delay in the judgement of collision results in an increase in the overshooting amount of the force. It is, therefore, desired to quickly judge the collision.
Also, an incorrect judgement of collision may render the die cushion mechanism to be in a state where the press work can no longer be executed. Therefore, it is necessary to reliably judge the collision of the slide with the cushion pad.
SUMMARY OF THE INVENTIONThe present invention was accomplished in view of the above-mentioned circumstances, and has an object of providing a device, for judging the collision of a die cushion mechanism, which is capable of judging the collision between the slide and the cushion pad within a short period of time and reliably, and a system for judging the collision.
In order to achieve the above object according to a first aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor, as a drive source, comprising:
force detection means for detecting a force produced between the die cushion and the slide; and
comparator means for comparing a force detection value detected by the force detection means with a predetermined threshold value;
wherein when the force detection value becomes greater than the threshold value, it is so judged that the slide has come into collision with the die cushion.
According to a second aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
force detection means for detecting a force produced between the die cushion and the slide; and
comparator means for comparing a force detection value detected by the force detection means with a force detection value before the operation detected by the force detection means before the operation of the die cushion;
wherein, when the force detection value becomes greater than the force detection value before the operation, it is so judged that the slide has come into collision with the die cushion.
According to a third aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
force detection means for detecting a force produced between the die cushion and the slide; and
comparator means for comparing a first-order differentiated value of the force detection value detected by the force detection means with a predetermined threshold value;
wherein, when the first-order differentiated value becomes greater than the threshold value, it is so judged that the slide has come into collision with the die cushion.
According to a fourth aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
force detection means for detecting a force produced between the die cushion and the slide; and
comparator means for comparing a second-order differentiated value of the force detection value detected by the force detection means with a predetermined threshold value;
wherein when the second-order differentiated value becomes greater than the threshold value, it is so judged that the slide has come into collision with the die cushion.
According to a fifth aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
force instruction means for instructing a force to be produced between the die cushion and the slide;
force detection means for detecting a force produced between the die cushion and the slide; and
comparator means for comparing a force detection value detected by the force detection means with a force instruction value instructed by the force instruction means;
wherein, when the force detection value becomes greater than the force instruction value, it is so judged that the slide has come into collision with the die cushion.
That is, the first aspect judges the collision by detecting a force detection value only and by comparing it with a predetermined threshold value, the second aspect judges the collision by detecting a force detection value only and by comparing it with a force detection value, of before the operation, that has been detected in advance, the third aspect judges the collision by detecting a force detection value only and by comparing it, after having put it through first-order differentiation, with a predetermined threshold value, the fourth aspect judges the collision by detecting a force detection value only and by comparing it, after having put it through second-order differentiation, with a predetermined threshold value, and the fifth aspect judges the collision by detecting a force detection value only and by comparing it with a force instruction value. In the first to fifth aspects, therefore, there is no need to use the force control speed instruction value and the position control speed instruction value at the time of judging the collision, and the collision can be judged within a short period of time.
According to a sixth aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
speed detection means for detecting a speed of the die cushion; and
comparator means for comparing a speed detection value detected by the speed detection means with a predetermined threshold value;
wherein, when the speed detection value becomes greater than the threshold value, it is so judged that the slide has come into collision with the die cushion.
According to a seventh aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force for the slide in a press machine using a servo motor as a drive source, comprising:
speed detection means for detecting a speed of the die cushion; and
comparator means for comparing a first-order differentiated value of the speed detection value detected by the speed detection means with a predetermined threshold value;
wherein when the first-order differentiated value becomes greater than the threshold value, it is so judged that the slide has come into collision with the die cushion.
According to an eight aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
acceleration detection means for detecting an acceleration of the die cushion; and
comparator means for comparing an acceleration detection value detected by the acceleration detection means with a predetermined threshold value;
wherein when the acceleration detection value becomes greater than the threshold value, it is so judged that the slide has come into collision with the die cushion.
That is, the sixth aspect judges the collision by detecting a speed detection value only and by comparing it with a predetermined threshold value, the seventh aspect judges the collision by detecting a speed detection value only and by comparing it, after having put it through first-order differentiation, with a predetermined threshold value, and the eighth aspect judges the collision by detecting an acceleration detection value only and by comparing it with a predetermined threshold value. In the sixth to eighth aspects, therefore, there is no need of using the force control speed instruction value and the position control speed instruction value at the time of judging the collision, and the collision can be judged within a short period of time.
According to a ninth aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
slide position detection means for detecting a position of the slide; and
comparator means for comparing a slide position detection value detected by the slide position detection means with a predetermined threshold value;
wherein, when the slide position detection value becomes smaller than the threshold value, it is so judged that the slide has come into collision with the die cushion.
According to a tenth aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
slide position instruction means for instructing a position of the slide; and
comparator means for comparing a slide position instruction value instructed by the slide position instruction means with a predetermined threshold value;
wherein when the slide position instruction value becomes smaller than the threshold value, it is so judged that the slide has come into collision with the die cushion.
According to an eleventh aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
distance detection means for detecting a distance between the die cushion and the slide; and
comparator means for comparing a distance detected by the distance detection means with a predetermined threshold value;
wherein when the distance becomes smaller than the threshold value, it is judged that the slide has come into collision with the die cushion.
According to a twelfth aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
slide position detection means for detecting a position of the slide;
die cushion position detection means for detecting a position of the die cushion; and
comparator means for comparing a slide position detection value detected by the slide position detection means with a die cushion position detection value detected by the die cushion position detection means;
wherein when the slide position detection value becomes smaller than the die cushion position detection value, it is judged that the slide has come into collision with the die cushion.
According to a thirteenth aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
slide position detection means for detecting a position of the slide;
die cushion position detection means for detecting a position of the die cushion; and
comparator means for comparing a slide position detection value detected by the slide position detection means with a die cushion position detection value detected by the die cushion position detection means;
wherein, when the slide position detection value becomes in agreement with the die cushion position detection value, it is so judged that the slide has come into collision with the die cushion.
According to a fourteenth aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
slide position instruction means for instructing a position of the slide;
die cushion position instruction means for instructing a position of the die cushion; and
comparator means for comparing a slide position instruction value instructed by the slide position instruction means with a die cushion position instruction value instructed by the die cushion position instruction means;
wherein, when the slide position instruction value becomes smaller than the die cushion position instruction value, it is so judged that the slide has come into collision with the die cushion.
According to a fifteenth aspect of the present invention, there is provided a device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
slide position instruction means for instructing a position of the slide;
die cushion position instruction means for instructing a position of the die cushion; and
comparator means for comparing a slide position instruction value instructed by the slide position instruction means with a die cushion position instruction value instructed by the die cushion position instruction means;
wherein, when the slide position instruction value becomes in agreement with the die cushion position instruction value, it is so judged that the slide has come into collision with the die cushion.
That is, the ninth aspect judges the collision by detecting a slide position detection value only and by comparing it with a predetermined threshold value, the tenth aspect judges the collision by using a slide position instruction value only and by comparing it with a predetermined threshold value, the eleventh aspect judges the collision by detecting only a distance between the slide and the die cushion, and by comparing it with a predetermined threshold value, the twelfth and thirteenth aspects judge the collision by detecting a slide position detection value and a die cushion position detection value, and by comparing them with each other, and the fourteenth and fifteenth aspects judge the collision by using a slide position instruction value and a die cushion position instruction value, and by comparing them with each other. In the ninth to fifteenth aspects, therefore, there is no need of using the force control speed instruction value or the position control speed instruction value at the time of judging the collision, and the collision can be judged within a short period of time.
According to a sixteenth aspect of the present invention, there is provided a system for judging the collision, comprising:
at least any one of the devices for judging the collision of first to fifteenth aspects; and
at least another one of the devices for judging the collision of first to fifteenth aspects;
wherein when the at least any one of the devices for judging the collision and the at least another one of the devices for judging the collision have rendered the judgement to have collided, it is so judged that the slide has come into collision with the die cushion.
That is, in the sixteenth aspect, as there are two devices for judging the collision, the collision can be positively judged, without occurring erroneous judgements.
According to a seventeenth aspect of the present invention, there is provided a system for judging the collision, comprising:
any one of the devices for judging the collision of first to fifteenth aspects;
another one of the devices for judging the collision of first to fifteenth aspects; and
switching means for changing a position control unit that controls the slide depending upon a position of the slide over to a force control unit that controls the slide depending upon a force acting on the slide;
wherein when the another one of the devices for judging the collision has not rendered the judgement of collision after the switching means has changed the position control unit over to the force control unit as a result of the judgement of collision rendered by the any one of the devices for judging the collision, it is so judged that the slide has not colliding with the die cushion, and the switching means changes the force control unit over to the position control unit.
That is, in the seventeenth aspect, when any one device for judging the collision has rendered the judgement of collision, the position control is changed over to the force control by the switching operation, making it possible to execute the switching operation more quickly than in the sixteenth embodiment. When another one of the devices for judging the collision has not rendered the judgement of collision after the changer over, the force control is returned back to the position control to prevent the occurrence of an erroneous judgement.
The above objects, features and advantages as well as other objects, features and advantages of the invention will become obvious from the detailed description of the typical embodiments of the invention shown in the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
Embodiments of the invention will now be described with reference to the accompanying drawings. In the drawings, the same members are denoted by the same reference numerals. For easy understanding, the scale is suitably changed in each drawing.
The die cushion mechanism 20 according to the present invention includes an elastic element 30 that expands and contracts in the vertical direction relative to the lower surface of the bolster 15, a cushion pad 16 that is incorporated in the press machine and moves in correspondence with the motion of a slide 24 and a servo motor 18 for lifting and lowering the cushion pad 16. In the present invention, the elastic element 30 need not be used. In the following description, however, it is presumed that the elastic element 30 is being employed. As shown, the bottom surface of the elastic element 30 is held by the cushion pad 16. Here, the elastic element 30 may be an elastic material such as a rubber, a spring or a hydraulic chamber. Further, a plurality of cushion pins 31 extend from the top surface of the elastic element 30 and protrude beyond the bolster 15 by passing through the holes of the bolster 15. A material 35 to be worked is supported at the ends of the cushion pins 31.
The slide 24 supports a first mold 26 used for the press work. The slide 24 moves in a direction to approach, or move away from, a second mold 27 supported by the bolster 15 at a speed V required for the press work. Here, the slide 24 may be so constituted as to be moved by a servo motor separate from the servo motor 18.
The cushion pad 16 is arranged in relation to the second mold 27, and is connected to the output shaft of the servo motor 18 via a ball-screw device 17. The slide 24 (or the first mold 26), while moving in a direction to close the mold, comes into direct or indirect collision with the cushion pad 16 that is standing at a predetermined position. Usually, the cushion pad 16 is so constituted as to move together with the slide 24 while applying a predetermined force (pressure) F to the slide 24 from when the mold is closed (molding) until when the mold is opened. In this specification, the cushion pad 16 and the members related thereto are called a die cushion as necessary.
The above operation is conducted, by the control device 10 for the press machine, based on the present invention. The operation of the press machine will now be concretely described with reference to
Thus, the control device 10 produces a correlative pressure (i.e., force F) between the cushion pad 16 and the slide 24 by controlling the servo motor 18. As will be learned from
As described above, the die cushion is, first, operated and controlled by the position control unit 920. When it is judged that the slide 24 has come into collision with the die cushion, a collision judgement signal is fed to the switch 930, and the die cushion is changed from being controlled by the position control unit 920 to being controlled by the force control unit 940.
Described below with reference to
In the program 110 for judging the collision shown in
In the program 120 for judging the collision shown in
Further, in the program 130 for judging the collision shown in
Similarly, in the program 140 for judging the collision shown in
In the program 150 for judging the collision shown in
When the judgement is of collision rendered by the methods 110 to 150 of the first embodiment, the die cushion is changed by the switch 930 from being controlled by the position control unit 920 over to being controlled by the force control unit 940. As a result, a suitable cushion pressure is produced.
According to the first embodiment of the present invention as described above, the position control speed instruction value Vcx is not compared with the force control speed instruction value Vcf unlike that of the prior art. When the cushion pad is being lowered as described above, it becomes difficult to judge the collision based on the comparison of the force control speed instruction value Vcf with the position control speed instruction value Vcx, and the judgement of collision involves a delay. However, the first embodiment makes it possible to judge the collision within a short period of time since it uses neither the force control speed instruction value Vcf nor the position control speed instruction value Vcx. As a result, the first embodiment makes it possible to prevent an increase in the overshooting amount of the force that stems from a delay in the judgement of collision.
In the program 160 for judging the collision of the second embodiment shown in
Further, in the program 170 for judging the collision of the second embodiment shown in
Further, in the program 180 for judging the collision of the second embodiment shown in
When the judgement of collision is rendered by the methods 160 to 180 of the second embodiment, the die cushion is changed by the switch 930 from being controlled by the position control unit 920 over to being controlled by the force control unit 940 like in the case of the first embodiment. As a result, a suitable cushion pressure is produced.
According to the second embodiment of the present invention as described above, the position control speed instruction value Vcx is not compared with the force control speed instruction value Vcf, unlike that of the prior art. Namely, the second embodiment makes it possible to judge the collision within a short period of time since it uses neither the force control speed instruction value Vcf nor the position control speed instruction value Vcx. As a result, the second embodiment makes it possible to prevent an increase in the overshooting amount of the force that stems from a delay in the judgement of collision.
The control device 10 further includes a comparison operation unit 95 which compares a slide position detection value Y1d detected by the slide position detection unit 25, a slide position instruction value Y1c instructed by the slide position instruction unit 61, a die cushion position detection value Y2d detected by the die cushion position detection unit 25, a die cushion position instruction value Y2c instructed by the die cushion position instruction unit 62, and a distance detection value Dd between the slide and the die cushion detected by the distance detection unit 25, with their respective threshold values.
In the program 190 for judging the collision of the third embodiment shown in
Further, in the program 200 for judging the collision of the third embodiment shown in
Further, in the program 210 for judging the collision of the third embodiment shown in
At step 213 in the program 210 for judging the collision shown in
Further, in the program 220 for judging the collision of the third embodiment shown in
Similarly, at step 223 in the program 220 for judging the collision shown in
Further, in the program 230 for judging the collision of the third embodiment shown in
When the judgement of collision is rendered by the methods 190 to 230 of the third embodiment, the die cushion is changed by the switch 930 from being controlled by the position control unit 920 over to being controlled by the force control unit 940 like in the above-mentioned embodiments. As a result, a suitable cushion pressure is produced.
According to the third embodiment of the present invention as described above, the position control speed instruction value Vcx is not compared with the force control speed instruction value Vcf, unlike that of the prior art. Namely, the third embodiment makes it possible to judge the collision within a short period of time because it uses neither the force control speed instruction value Vcf nor the position control speed instruction value Vcx. As a result, the third embodiment makes it possible to prevent an increase in the overshooting amount of the force that stems from a delay in the judgement of collision.
Here, the programs (methods) 110 to 230 for judging the collision according to the first to third embodiments can be executed within a shorter times than those of the conventional judging methods. Therefore, there may be executed some of the programs (methods) 110 to 230 for judging the collision.
In the system for judging the collision shown in
Next, the timer is driven simultaneously with the switching operation by the switch 930 to record the passage of time T after the switching operation (step 255). The timer, that is not shown, has been incorporated in the control device 10.
After the start of the timer, there is executed another one of the programs (methods) 110 to 230 for judging the collision at step 256. When the judgement of collision is rendered by another method, the judgement of collision is rendered by the system of judging the collision shown in
When the judgement of collision is not rendered at step 256, on the other hand, reference is made to the passage of time T (step 257) to judge whether the passage of time T is shorter than a predetermined value T0 (step 258). The passage of time T is from after the end of the method of judging the collision at step 251 until after the end of the method of judging the collision at step 256. When the passage of time T is shorter than the predetermined period of time T0, it is so judged that the judgement at step 256 was executed within the predetermined period of time T0 after step 251. Therefore, it is so taken that the judgement of no collision at step 256 was proper, the judgement of collision at step 251 was erroneous and, hence, the judgement of no collision is rendered by the system for judging the collision shown in
When the passage of time T is not shorter than the predetermined value TO at step 258, it means that the method of judging the collision was not executed within the predetermined period of time at step 256. Therefore, the judgement of collision at step 256 is not employed, and the routine proceeds to step 260 to end the processing. Further, when the judgement of collision is not rendered at step 251, the routine proceeds to step 253 to end the processing without executing the switching operation of the switch 930.
The system for judging the collision described with reference to
Though the invention was described above by way of typical embodiments, it will be comprehended that a person skilled in the art may further pursue the above-mentioned modifications, various other modifications, omissions and additions without departing from the scope of the invention.
Claims
1. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- force detection means for detecting a force produced between said die cushion and said slide; and
- comparator means for comparing a force detection value detected by said force detection means with a predetermined threshold value;
- wherein, when said force detection value becomes greater than said threshold value, it is so judged that said slide has come into collision with said die cushion.
2. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- force detection means for detecting a force produced between said die cushion and said slide; and
- comparator means for comparing a force detection value detected by said force detection means with a force detection value before the operation detected by said force detection means before the operation of said die cushion;
- wherein, when said force detection value becomes greater than said force detection value of before the operation, it is so judged that said slide has come into collision with said die cushion.
3. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- force detection means for detecting a force produced between said die cushion and said slide; and
- comparator means for comparing a first-order differentiated value or a second order differentiated value of the force detection value detected by said force detection means with a predetermined threshold value;
- wherein, when said first-order differentiated value or said second order differentiated value becomes greater than said threshold value, it is so judged that said slide has come into collision with said die cushion.
4. (canceled)
5. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- force instruction means for instructing a force to be produced between said die cushion and said slide;
- force detection means for detecting a force produced between said die cushion and said slide; and
- comparator means for comparing a force detection value detected by said force detection means with a force instruction value instructed by said force instruction means;
- wherein, when said force detection value becomes greater than said force instruction value, it is so judged that said slide has come into collision with said die cushion.
6. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- speed detection means for detecting a speed of said die cushion; and
- comparator means for comparing a speed detection value detected by said speed detection means with a predetermined threshold value;
- wherein, when said speed detection value becomes greater than said threshold value, it is so judged that said slide has come into collision with said die cushion.
7. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- speed detection means for detecting a speed of said die cushion; and
- comparator means for comparing a first-order differentiated value of the speed detection value detected by said speed detection means with a predetermined threshold value;
- wherein, when said first-order differentiated value becomes greater than said threshold value, it is so judged that said slide has come into collision with said die cushion.
8. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- acceleration detection means for detecting an acceleration of said die cushion; and
- comparator means for comparing an acceleration detection value detected by said acceleration detection means with a predetermined threshold value;
- wherein, when said acceleration detection value becomes greater than said threshold value, it is so judged that said slide has come into collision with said die cushion.
9. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- slide position detection means for detecting a position of said slide; and
- comparator means for comparing a slide position detection value detected by said slide position detection means with a predetermined threshold value;
- wherein, when said slide position detection value becomes smaller than said threshold value, it is so judged that said slide has come into collision with said die cushion.
10. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- slide position instruction means for instructing a position of said slide; and
- comparator means for comparing a slide position instruction value instructed by said slide position instruction means with a predetermined threshold value;
- wherein, when said slide position instruction value becomes smaller than said threshold value, it is so judged that said slide has come into collision with said die cushion.
11. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- distance detection means for detecting a distance between said die cushion and said slide; and
- comparator means for comparing a distance detected by said distance detection means with a predetermined threshold value;
- wherein, when said distance becomes smaller than said threshold value, it is so judged that said slide has come into collision with said die cushion.
12. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- slide position detection means for detecting a position of said slide;
- die cushion position detection means for detecting a position of said die cushion; and
- comparator means for comparing a slide position detection value detected by said slide position detection means with a die cushion position detection value detected by said die cushion position detection means;
- wherein, when said slide position detection value becomes smaller than or equal to said die cushion position detection value, it is so judged that said slide has come into collision with said die cushion.
13. (canceled)
14. A device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source, comprising:
- slide position instruction means for instructing a position of said slide;
- die cushion position instruction means for instructing a position of said die cushion; and
- comparator means for comparing a slide position instruction value instructed by said slide position instruction means with a die cushion position instruction value instructed by said die cushion position instruction means;
- wherein, when said slide position instruction value becomes smaller than or equal to said die cushion position instruction value, it is so judged that said slide has come into collision with said die cushion.
15. (canceled)
16. A system for judging the collision, comprising:
- a first device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source; and
- a second device for judging the collision of the slide with the die cushion in the die cushion mechanism which produces a force against the slide in the press machine using the servo motor;
- wherein, when the first device for judging the collision and the second device for judging the collision have rendered the judgment of collision, it is so judged that said slide has come into collision with said die cushion.
17. A system for judging the collision, comprising:
- a first device for judging the collision of a slide with a die cushion in a die cushion mechanism which produces a force against the slide in a press machine using a servo motor as a drive source;
- a second device for judging the collision of the slide with the die cushion in the die cushion mechanism which produces a force against the slide in the press machine using the servo motor; and
- switching means for changing a position control unit that controls said slide depending upon a position of said slide over to a force control unit that controls said slide depending upon a force acting on said slide;
- wherein, when said second device for judging the collision is not rendering the judgment of collision after said switching means has changed said position control unit over to said force control unit as a result of the judgment of collision rendered by said first device for judging the collision, it is so judged that said slide has not collided with said die cushion, and said switching means changes said force control unit over to said position control unit.
Type: Application
Filed: Jun 30, 2006
Publication Date: Jan 18, 2007
Applicant:
Inventors: Yasusuke Iwashita (Fujiyoshida-shi), Tadashi Okita (Fujiyoshida-shi), Hiroyuki Kawamura (Minamitsuru-gun), Satoshi Ikai (Minamitsuru-gun)
Application Number: 11/477,804
International Classification: B21D 22/21 (20060101);