IP Library Granted Patent US 11,686,294
Granted Patent B2
US 11,686,294 · App. 17/729,877 · Granted Jun 27, 2023

Shape memory alloy actuators and methods thereof

Inventors: Mark A. Miller (Hutchinson, MN); Nathaniel K. Behning (Hutchinson, MN); Dean E. Myers (Stewart, MN); Michael W. Davis (Rockford, MN); Ryan N. Ruzicka (Waconia, MN); Zachary A. Pokornowski (Cokato, MN); Yasushi Sakamoto (Hutchinson, MN)
Assignee: Hutchinson Technology Incorporated
F03G7/065F03G7/0614G02B27/646H02N10/00G02B7/09G03B13/36
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Quick Facts
Patent No.
US 11,686,294
App. No.
17/729,877
Granted
Jun 27, 2023
Kind
B2
Abstract

SMA actuators and related methods are described. One embodiment of an actuator includes a base; a plurality of buckle arms; and at least a first shape memory alloy wire coupled with a pair of buckle arms of the plurality of buckle arms. Another embodiment of an actuator includes a base and at least one bimorph actuator including a shape memory alloy material. The bimorph actuator attached to the base.

Claims (33)

1. A system comprising:

a base portion comprising a conductive metal base layer separated into at least a first pad and second pad by gaps of a dielectric layer;

a fixed end coupled to the base portion; and

at least two arms extending from the fixed end, each of the at least two arms terminating at a corresponding free end, the at least two arms comprising:

a first arm comprising a first arm conductive metal base layer in communication with the first pad, a first arm insulator layer, and a first arm shape memory alloy (SMA) material; and

a second arm comprising a second arm conductive metal base layer in communication with the second pad, a second arm insulator layer, and a second arm SMA material.

2. The system of claim 1 , wherein any of the first arm SMA material and the second arm SMA material includes an SMA ribbon or an SMA wire.

3. The system of claim 1 , wherein the first pad is coupled with a current supply for the first arm SMA material to actuate the first arm.

4. The system of claim 1 , wherein the second pad is coupled with a current supply for the second arm SMA material to actuate the second arm.

5. The system of claim 1 , wherein the first arm conductive metal base layer and the first arm SMA material are adjacent but not in contact along a length of the first arm.

6. The system of claim 1 , further comprising:

a tongue connecting the free ends of each the at least two arms.

7. The system of claim 6 , wherein the tongue includes conductive metal that allows electrical current to flow between the first arm SMA material and the second arm SMA material.

8. The system of claim 6 , wherein the tongue includes a load point element.

9. The system of claim 8 , wherein the load point element is configured to engage with a moving carriage.

10. The system of claim 1 , further comprising:

a tongue at the free end of the first arm, the tongue including a conductive metal to connect and allow electrical current to flow through the first arm SMA material and the first arm conductive metal base layer.

11. The system of claim 1 , further comprising:

a tongue at the free end of the second arm, the tongue including a conductive metal to connect and allow electrical current to flow through the second arm SMA material and the second arm shape conductive metal base layer.

12. A shape-memory alloy (SMA) actuator comprising:

a base portion separated into at least a first pad and a second pad;

a fixed end coupled to the base portion;

at least two actuating arms extending from the fixed end, each of the at least two actuating arms comprising a SMA material extending along a length of each of the at least two arms, wherein each of the at least two actuating arms comprising:

a first actuating arm comprising a first arm conductive metal base layer in communication with the first pad, a first arm insulator layer, and a first arm shape memory alloy (SMA) material; and

a second actuating arm comprising a second arm conductive metal base layer in communication with the second pad, a second arm insulator layer, and a second arm SMA material; and

at least one free end, wherein the at least two actuating arms terminate at the at least one free end, wherein the at least one free end includes a tongue comprising a conductive metal base layer.

13. The SMA actuator of claim 12 , wherein the base portion comprises a conductive metal base layer separated into at least the first pad and the second pad by gaps of a dielectric layer.

14. The SMA actuator of claim 12 , wherein the SMA material includes an SMA ribbon or an SMA wire.

15. The SMA actuator of claim 12 , wherein the SMA material is affixed to any of the at least two arms using an adhesive film material.

16. The SMA actuator of claim 13 , wherein any of the SMA material is electrically coupled to any of the first pad or the second pad of the conductive metal base layer and electrically coupled to the conductive metal base layer at the at least one free end.

17. The SMA actuator of claim 12 , wherein the tongue allows electrical current to flow between the first arm SMA material and the second arm SMA material.

18. The SMA actuator of claim 12 , wherein the tongue includes a load point element.

19. The SMA actuator of claim 18 , wherein the load point element is configured to engage with a moving carriage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2022
From: MILLER, MARK A.; BEHNING, NATHANIEL K.; MYERS, DEAN E.; DAVIS, MICHAEL W.; RUZICKA, RYAN N.; POKORNOWSKI, ZACHARY A.; SAKAMOTO, YASUSHI
To: HUTCHINSON TECHNOLOGY INCORPORATED
Reel/Frame 059737/0554 →
Continuity (8)
Continuation 17207530 · Mar 19, 2021
Continuation In Part 16775207 · Jan 28, 2020
Continuation In Part 15971995 · May 4, 2018
Provisional Application 63090569 · Oct 12, 2020
Provisional Application 62826106 · Mar 29, 2019
Provisional Application 62650991 · Mar 30, 2018
Provisional Application 62502568 · May 5, 2017
Related Publication 20220252055A1 · Aug 11, 2022
Cited By (6)
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