Six-Dimensional Compliance Analysis and Validation of Orthoplanar Springs

Author:

Qiu Chen1,Qi Peng1,Liu Hongbin1,Althoefer Kaspar1,Dai Jian S.21

Affiliation:

1. Centre for Robotics Research, King's College London, London WC2R 2LS, UK e-mail:

2. Fellow ASME Chair of Mechanisms and Robotics MoE Key Laboratory for Mechanism Theory and Equipment Design, Tianjin University, Tianjin 300072, China;

Abstract

This paper for the first time investigates the six-dimensional compliance characteristics of orthoplanar springs using a compliance-matrix based approach, and validates them with both finite element (FEM) simulation and experiments. The compliance matrix is developed by treating an orthoplanar spring as a parallel mechanism and is revealed to be diagonal. As a consequence, corresponding diagonal compliance elements are evaluated and analyzed in forms of their ratios, revealing that an orthoplanar spring not only has a large linear out-of-plane compliance but also has a large rotational bending compliance. Both FEM simulation and experiments were then conducted to validate the developed compliance matrix. In the FEM simulation, a total number of 30 types of planar-spring models were examined, followed by experiments that examined the typical side-type and radial-type planar springs, presenting a good agreement between the experiment results and analytical models. Further a planar-spring based continuum manipulator was developed to demonstrate the large-bending capability of its planar-spring modules.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference31 articles.

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2. Compliant, Ortho-Planar, Linear Motion Spring,2006

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4. Lamina Emergent Mechanisms and Their Basic Elements;J. Mech. Rob.,2010

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