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基于超弹性形状记忆合金的恒力组件设计方法

Design Method for Constant Force Components Based on Superelastic SMA.

作者信息

Wang Minghui, Yu Hongliu, Shi Ping, Meng Qiaoling

机构信息

Shanghai Engineering Research Center of Assistive Devices/Institute of Rehabilitation Engineering and Technology, School of Medical Instrument and Food Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.

Department of Precision Mechanical Engineering, School of Mechatronic Engineering and Automation, Shanghai University, Shanghai 200444, China.

出版信息

Materials (Basel). 2019 Sep 4;12(18):2842. doi: 10.3390/ma12182842.

Abstract

Clamping devices with constant force or pressure are desired in medical instruments, such as hemostatic forceps and the artificial sphincter, to prevent soft tissues from injures due to overloading. This paper studies the design method issues in constant force components using superelastic shape memory alloy. A generalized method for generating a constant force components-based shape memory alloy is proposed. An example of a C-shaped shape memory alloy sheet with a thickness of 0.2 mm is presented. The design results using the generalized design method for a C-shaped shape memory alloy sheet with 0.2 mm thickness are compared with its experimental results. Based on the generalized design method, the obtained design solutions for Cases 1 and 2 are coincident with the results obtained by the experiments. It could be seen that the generated design shape of the superelastic shape memory alloy component might obtain constant force within a relatively large deformation range. It is validated that the proposed generalized design method was feasible and effective. It is also illustrated that changing the geometric dimensions of the superelastic SMA component might obtain constant force within a relatively large deformation range.

摘要

在诸如止血钳和人工括约肌等医疗器械中,需要使用具有恒定力或压力的夹紧装置,以防止软组织因过载而受伤。本文研究了使用超弹性形状记忆合金的恒力部件的设计方法问题。提出了一种基于恒力部件的形状记忆合金的通用生成方法。给出了一个厚度为0.2毫米的C形形状记忆合金薄板的示例。将使用通用设计方法对厚度为0.2毫米的C形形状记忆合金薄板的设计结果与其实验结果进行了比较。基于通用设计方法,案例1和案例2得到的设计方案与实验结果一致。可以看出,超弹性形状记忆合金部件生成的设计形状可能在相对较大的变形范围内获得恒定力。验证了所提出的通用设计方法是可行且有效的。还表明,改变超弹性形状记忆合金部件的几何尺寸可能在相对较大的变形范围内获得恒定力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4d1/6766029/46761003b796/materials-12-02842-g001.jpg

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