A Structural Optimization Framework to Design Compliant Constant Force Mechanisms With Large Energy Storage

Author:

Ou Haihua1,Yi Haiping1,Qaiser Zeeshan1,Ur Rehman Tanzeel1,Johnson Shane23

Affiliation:

1. Shanghai Jiao Tong University UM-SJTU Joint Institute, , Minhang, Shanghai 200240 , China

2. Shanghai Jiao Tong University UM-SJTU Joint Institute, , Minhang, Shanghai 200240 , China ;

3. Shanghai Jiao Tong University State Key Laboratory of Mechanical, Systems and Vibration, , Minhang, Shanghai 200240 , China

Abstract

Abstract In this study, we present a structural optimization framework to design constant force mechanisms (CFMs) with high energy storage capacity. In the framework, the constant force behavior with a zero preload is defined to be ideal, as this has the maximum energy storage given force and displacement limits. A graph-based topology selection, followed by shape optimization is conducted to select designs with energy storage most similar to the energy of the ideal constant force relation. The obtained CFM designs through this framework has a higher energy similarity index compared to typical designs from literature (0.95 versus 0.90). The constant force mechanisms developed through this study can be further applied in different robot/human–environment interfaces that benefit from both mitigating impact force and increasing energy storage.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

Mechanical Engineering

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