IP Library › Granted Patent US 10,987,816
Granted Patent B2
US 10,987,816 · App. 16/083,760 · Granted Apr 27, 2021

Passive stiffness gripper

Inventors: Dong-il Park (Daejeon, KR); Chan-hun Park (Daejeon, KR); Hwi-su Kim (Daejeon, KR); Hyun-min Do (Daejeon, KR); Dong-won Yun (Daejeon, KR); Tae-yong Choi (Daejeon, KR); Jin-ho Kyung (Daejeon, KR); Young-su Son (Daejeon, KR); Byung-in Kim (Daejeon, KR); Doo-hyeong Kim (Sejong, KR)
Assignee: KOREA INSTITUTE OF MACHINERY & MATERIALS
B25J15/04B25J9/14B25J9/16B25J9/1694B25J17/0208B25J17/0216B25J19/02
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Quick Facts
Patent No.
US 10,987,816
App. No.
16/083,760
Granted
Apr 27, 2021
Kind
B2
Abstract

A passive compliance gripper includes a passive compliance part, a displacement measuring element and a gripper mount. A first end of the passive compliance part is fixed, and a second end of the passive compliance part is configured to be transformed. The displacement measuring element is equipped to the passive compliance part, and measures displacement due to transformation of the passive compliance part. The gripper mount is connected to the second end of the passive compliance part, and has a gripper part gripping a component.

Claims (39)

1. A passive compliance gripper comprising:

a passive compliance part, a first end of the passive compliance part being fixed, a second end of the passive compliance part being configured to be transformed;

a displacement measuring element equipped to the passive compliance part, and configured to measure a displacement of the second end of the passive compliance part due to transformation of the passive compliance part;

a gripper mount connected to the second end of the passive compliance part, and having a gripper part for gripping a component; and

a displacement calculator connected to the displacement measuring element and configured to calculate a position of the gripper part based on the displacement measured by the displacement measuring element.

2. The passive compliance of claim 1 ,

wherein the position of the gripper part is a position of a lower portion of the gripper part.

3. The passive compliance of claim 2 , wherein the gripper controller provides a target moving path and a target position of a robot to a robot controller, based on the position of the lower portion of the gripper part.

4. A passive compliance gripper comprising:

a passive compliance part forming compliance between first and second ends thereof and controlling the compliance, the first end of the passive compliance part being fixed, the second end of the passive compliance part being configured to be transformed by the compliance and to be restored to an original position due to elasticity;

a variable compliance apparatus equipped to the passive compliance part, and changing the compliance;

a gripper mount connected to the second end of the passive compliance part, and having a gripper part gripping a component; and

a compliance controller connected to the variable compliance apparatus and configured to control the compliance of the variable compliance apparatus.

5. The passive compliance gripper of claim 4 , wherein the passive compliance part comprises:

an upper structure; and

a lower structure disposed under the upper structure, and spaced apart from the upper structure.

6. The passive compliance gripper of claim 5 , wherein the upper structure and the lower structure move relatively with a 6-degree of freedom.

7. The passive compliance gripper of claim 5 , wherein the gripper part is connected to a lower part of the lower structure.

8. The passive compliance gripper of claim 5 , wherein the variable compliance apparatus is a balloon which is disposed between the upper and lower structures and an inner pressure of which is controlled.

9. The passive compliance gripper of claim 8 , wherein the balloon comprises an elastic material.

10. The passive compliance gripper of claim 8 , wherein an inner groove is formed on each of a lower surface of the upper structure and an upper surface of the lower structure, and upper and lower sides of the balloon are respectively inserted and attached to the inner grooves.

11. The passive compliance gripper of claim 8 , wherein a flow channel is formed at the upper structure, a compressed air is supplied and exhausted through the flow channel, and the balloon is connected to the flow channel.

12. The passive compliance gripper of claim 4 , further comprising a displacement measuring element equipped to the passive compliance part, and measuring displacement due to transformation of the passive compliance part.

13. The passive compliance gripper of claim 12 , wherein the passive compliance part comprises an upper structure, and a lower structure disposed under and spaced apart from the upper structure,

wherein the displacement measuring element is equipped to each of legs which are stretchable and are connected to both ends of the upper and lower structures.

14. The passive compliance gripper of claim 13 , wherein each of the legs is linearly stretchable, and provides a 3-degree of freedom to each of the upper and lower structures.

15. The passive compliance gripper of claim 4 , wherein the gripper controller is connected to the displacement measuring element, and comprises a displacement calculator calculating a position of a lower portion of the gripper part based on the displacement measured by the displacement measuring element.

16. The passive compliance gripper of claim 15 , wherein the gripper controller further comprises a compliance calculator connected to the compliance controller and the displacement calculator,

wherein the compliance calculator calculates compliance, and the compliance controller controls the compliance of the variable compliance apparatus, based on the position of the lower portion of the gripper part calculated by the displacement calculator.

17. The passive compliance gripper of claim 16 , wherein the gripper controller provides a target moving path and a target position of a robot to a robot controller, based on the position of the lower portion of the gripper part.

18. A passive compliance gripper comprising:

a passive compliance part forming compliance between first and second ends thereof and controlling the compliance, the first end of the passive compliance part being fixed, the second end of the passive compliance part being configured to be transformed by the compliance;

a variable compliance apparatus equipped to the passive compliance part, and changing the compliance; and

a gripper mount connected to the second end of the passive compliance part, and having a gripper part gripping a component,

wherein the passive compliance part comprises:

an upper structure; and

a lower structure disposed under the upper structure, and spaced apart from the upper structure,

wherein the variable compliance apparatus is a balloon which is disposed between the upper and lower structures and an inner pressure of which is controlled, and

wherein a flow channel is formed at the upper structure, a compressed air is supplied and exhausted through the flow channel, and the balloon is connected to the flow channel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2018
From: PARK, DONG-IL; PARK, CHAN-HUN; KIM, HWI-SU; DO, HYUN-MIN; YUN, DONG-WON; CHOI, TAE-YONG; KYUNG, JIN-HO; SON, YOUNG-SU; KIM, BYUNG-IN; KIM, DOO-HYEONG
To: KOREA INSTITUTE OF MACHINERY & MATERIALS
Reel/Frame 046830/0851 →
Priority Claims (3)
KR 10-2016-0039928 · Apr 1, 2016 · national
KR 10-2016-0039952 · Apr 1, 2016 · national
KR 10-2016-0039999 · Apr 1, 2016 · national
Continuity (1)
Related Publication 20190091877A1 · Mar 28, 2019