IP Library › Granted Patent US 10,946,532
Granted Patent B2
US 10,946,532 · App. 16/360,854 · Granted Mar 16, 2021

Gripping tool and gripping system

Inventors: Emiko Ishida (Yokohama, JP); Hiromasa Takahashi (Minato, JP); Takeshi Toyoshima (Yokohama, JP)
Assignee: KABUSHIKI KAISHA TOSHIBA
B25J15/0033B23P19/04B25J15/0023B25J15/0028B25J15/06B25J15/08B25J15/12B65G47/908B65G47/91B65G47/90
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Quick Facts
Patent No.
US 10,946,532
App. No.
16/360,854
Granted
Mar 16, 2021
Kind
B2
Abstract

According to one embodiment, a gripping tool includes a gripper and a suction pad. The gripper is flexible. A granular material is provided in an interior of the gripper. The suction pad includes a pad portion and a pipe-shaped member and is surrounded with the gripper. The pad portion suctions a workpiece. The pipe-shaped member is connected to the pad portion. The suction pad is movable with respect to the gripper in a first direction. The first direction is from the pad portion toward the pipe-shaped member.

Claims (52)

1. A gripping tool, comprising:

a gripper, the gripper being flexible, a granular material being provided in an interior of the gripper;

a suction pad including a pad portion and a pipe-shaped member and being surrounded with the gripper, the pad portion suctioning a workpiece, the pipe-shaped member being connected to the pad portion; and

a holder holding an outer perimeter of the gripper,

the suction pad being movable with respect to the gripper in a first direction, the first direction being from the pad portion toward the pipe-shaped member, and

when the gripper deforms by contacting the workpiece, a position in the first direction of the outer perimeter is between a position in the first direction of an upper end of the gripper and a position in the first direction of a lower end of the gripper.

2. The tool according to claim 1 , wherein the tool grips the workpiece by causing the pad portion to suction the workpiece while moving the pad portion in the first direction with respect to the gripper, and by causing the gripper to contact the workpiece and depressurizing the interior of the gripper.

3. The tool according to claim 1 , wherein the pad portion of the suction pad is positioned further in a second direction than the gripper in a state in which the pad portion does not contact the workpiece, the second direction being opposite to the first direction.

4. The tool according to claim 1 , further comprising:

a guide mechanism fixed with respect to the gripper; and

a sliding member sliding along the guide mechanism in a direction of a line connecting the pad portion and the pipe-shaped member, the sliding member being fixed with respect to the suction pad,

when the suction pad is pressed onto the workpiece, the suction pad moves in the first direction with respect to the gripper, and the sliding member slides in the first direction along the guide mechanism.

5. The tool according to claim 1 , wherein the suction pad is urged in a second direction with respect to the gripper in a state in which the suction pad does not contact the workpiece, the second direction being opposite to the first direction.

6. The tool according to claim 1 , wherein

the gripper is deformable in a direction of a line connecting the pad portion and the pipe-shaped member.

7. The tool according to claim 1 , wherein the pipe-shaped member pierces the gripper inside the holder.

8. The tool according to claim 1 , further comprising:

a cylinder fixed with respect to the gripper; and

a piston provided inside the cylinder, the piston being slidable in a direction of a line connecting the pad portion and the pipe-shaped member,

the pipe-shaped member being linked to the piston,

when the suction pad is pressed onto the workpiece, the suction pad moves in the first direction with respect to the gripper by the piston sliding through the cylinder in the first direction.

9. A gripping system, comprising:

a robot mechanism including an arm;

the tool according to claim 1 mounted to a tip of the arm;

a first depressurizing apparatus connected to an interior space of the gripper and configured to depressurize the interior space;

a second depressurizing apparatus connected to the suction pad and configured to suction a gas via the suction pad; and

a controller controlling operations of the robot mechanism, the first depressurizing apparatus, and the second depressurizing apparatus.

10. A gripping tool, comprising:

a gripper, the gripper being flexible, a granular material being provided in an interior of the gripper;

a suction pad including a pad portion and a pipe-shaped member and being surrounded with the gripper; the pad portion suctioning a workpiece, the pipe-shaped member being connected to the pad portion;

a guide mechanism fixed with respect to the gripper; and

a sliding member sliding along the guide mechanism in a direction of a line connecting the pad portion and the pipe-shaped member, the sliding member being fixed with respect to the suction pad,

when the suction pad is pressed onto the workpiece, the suction pad moves in a first direction with respect to the gripper, and the sliding member slides in the first direction along the guide mechanism,

the first direction being from the pad portion toward the pipe-shaped member.

11. The tool according to claim 10 , wherein the tool grips the workpiece by causing the pad portion to suction the workpiece while moving the pad portion in the first direction with respect to the gripper, and by causing the gripper to contact the workpiece and depressurizing the interior of the gripper.

12. The tool according to claim 10 , wherein the pad portion of the suction pad is positioned further in a second direction than the gripper in a state in which the pad portion does not contact the workpiece, the second direction being opposite to the first direction.

13. The tool according to claim 10 , herein the suction pad is urged in a second direction with respect to the gripper in a state in which the suction pad does not contact the workpiece, the second direction being opposite to the first direction.

14. The tool according to claim 10 , further comprising a holder holding an outer perimeter of the gripper,

the gripper being deformable in a direction of a line connecting the pad portion and the pipe-shaped member.

15. The tool according to claim 14 , wherein the pipe-shaped member pierces the gripper inside the holder.

16. The tool according to claim 15 , wherein a portion of the gripper inside the holder is more deformable in the first direction than the outer perimeter of the gripper when the gripper deforms by contacting the workpiece.

17. The tool according to claim 10 , further comprising:

a cylinder fixed with respect to the gripper; and

a piston provided inside the cylinder, the piston being slidable in a direction of a line connecting the pad portion and the pipe-shaped member,

the pipe-shaped member being linked to the piston,

when the suction pad is pressed onto the workpiece, the suction pad moves in the first direction with respect to the gripper by the piston sliding through the cylinder in the first direction.

18. A gripping system, comprising:

a robot mechanism including an arm;

the tool according to claim 10 mounted to a tip of the arm;

a first depressurizing apparatus connected to an interior space of the gripper and configured to depressurize the interior space;

a second depressurizing apparatus connected to the suction pad and configured to suction a gas via the suction pad; and

a controller controlling operations of the robot mechanism, the first depressurizing apparatus, and the second depressurizing apparatus.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 17, 2019
From: ISHIDA, EMIKO; TAKAHASHI, HIROMASA; TOYOSHIMA, TAKESHI
To: KABUSHIKI KAISHA TOSHIBA
Reel/Frame 048907/0855 →
Priority Claims (1)
JP JP2017-047892 · Mar 13, 2017 · national
Continuity (2)
Continuation PCTJP2017034442 · Sep 25, 2017
Related Publication 20190217482A1 · Jul 18, 2019