Spool-packaging of shape memory alloy actuators: Performance model and experimental validation

Author:

Redmond John A1,Brei Diann1,Luntz Jonathan1,Browne Alan L2,Johnson Nancy L2

Affiliation:

1. Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI, USA

2. General Motors Research & Development, MC, Warren, MI, USA

Abstract

Shape memory alloy (SMA) actuators in the wire form are attractive because of their simplistic architecture and electrical operation, and their manufacturability at high yields and low cost. While SMA actuators are known for their superior work density among smart materials, packaging long lengths of SMA wire needed for moderate to large motions is an ongoing technical challenge. This article investigates spooling as a packaging approach to provide more compact actuator footprints. An analytical, quasi-static model is derived to provide a foundational tool for the analysis and synthesis of spool-packaged SMA wire actuators. The model predicts motion with respect to a generalized architecture, and specifiable geometric, material, and loading parameters. The model prediction accounts for the effects of local friction loss and bending strains, and for a “binding” limitation due to accumulated friction. An experimental validation study demonstrates the model’s ability to predict actuator motion well in terms of form and magnitude with respect to load and packaging geometry. This model provides a basis for a systematic application of spooled-packaging techniques to overcome packaging limitations of SMA, positioning SMA wire actuators as a viable alternative in many applications.

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Materials Science

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Design and Experimental Validation of a Hybrid Actuator Based on Piezoceramics and Shape-Memory-Alloys;Lecture Notes in Production Engineering;2017

2. Adaptive underslung beam using shape-memory alloys for frequency-tuning;Journal of Intelligent Material Systems and Structures;2016-09-13

3. Buckling Control Using Shape-Memory Alloy Cables;Journal of Engineering Mechanics;2016-06

4. Multi-functional Shape-Memory-Actuator with guidance function;Production Engineering;2013-03-28

5. Design of a Solid State Shape-Memory-Actuator with Guidance Functionality;State-of-the-Art Research and Application of SMAs Technologies (4th CIMTEC);2012-09-11

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