Analysis of mechanical properties in bending processes and optimal design of simple tape spring

H. Ye, Chun-ling Zhao, Yang Zhang, Qi Yao, Yanni Xiao
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引用次数: 10

Abstract

Abstract Tape spring is straight, thin-walled, elastic strip with curved cross-section, which can replace traditional hinges by allowing for folding elastically and unfolded releasing stored energy with fewer component parts. This work is devoted to the properties of the folding and deployment of simple tape spring by numerical simulation and experiment method. Firstly, the folding process of tape spring is experimentally investigated using a specially designed test rig and verified by using nonlinear finite element ABAQUS/Standard solver. Then the moment-rotation relationships for symmetric bending are studied, the effects of subtended angle of section, total tape spring length, thickness and cross section radius on the performance of tape spring are investigated. Furthermore, the optimal model of tape spring structure design is established based on the response surface methodology (RSM) and parameter’s effective analysis, which aims at maximum strain energy during the tape-spring hinge deployment and subjects to allowable stress of tape spring. And the interior point algorithm is used to solve the optimal model. The optimal results are of great importance to the design of novel deployable structures with high stability, reliability and lightweight.
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简单带式弹簧弯曲力学性能分析及优化设计
带式弹簧是一种具有弯曲截面的直薄壁弹性条,可以代替传统的铰链,以较少的部件进行弹性折叠和展开,释放存储的能量。本文采用数值模拟和实验相结合的方法研究了简单带状弹簧的折叠和展开特性。首先,利用专门设计的实验平台对带式弹簧的折叠过程进行了实验研究,并利用非线性有限元软件ABAQUS/Standard求解器进行了验证。在此基础上,研究了对称弯曲时的弯矩-旋转关系,研究了带式弹簧的截面夹角、带式弹簧总长度、带式弹簧厚度和带式弹簧的截面半径对带式弹簧性能的影响。在此基础上,基于响应面法(RSM)和参数有效分析,以带簧铰展开过程中的最大应变能为目标,在满足带簧许用应力的条件下,建立了带簧结构设计的优化模型。采用内点算法求解最优模型。优化结果对设计高稳定性、高可靠性、轻量化的新型可展开结构具有重要意义。
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