Thermo-mechanical numerical analysis of stent unit cell

V. Dunić, N. Busarac, V. Slavkovic, R. Slavkovic
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Abstract

This paper aims to highlight importance of coupled thermo-mechanical analysis of structures and devices made of shape memory alloys (SMA). Ti-Ni alloys are recognized as very biocompatible SMA, so theirs usage is very often in medical purpose. Stent implants made of SMA are the best known application of such materials, so the unit cell of some typical stent model is used to demonstrate the necessity of coupled finite element based numerical analysis of such structures. The thermo-mechanical coupling is realized in partitioned approach, whereas software components for structural analysis (PAKS) and heat transfer (PAKT) have been used as suitable solutions. The SMA constitutive model is implemented into PAKS with the capability to solve large strain problems by using multiplicative decomposition of deformation gradient.
支架单元胞热-力学数值分析
本文旨在强调形状记忆合金(SMA)结构和器件的热-力耦合分析的重要性。钛镍合金是公认的生物相容性很好的SMA,因此在医学上的应用非常广泛。SMA制成的支架植入物是此类材料最广为人知的应用,因此本文以某典型支架模型的单元胞为例,说明对此类结构进行基于耦合有限元的数值分析的必要性。热-机械耦合以分区的方式实现,而结构分析软件(PAKS)和传热软件(PAKT)是合适的解决方案。将SMA本构模型应用到PAKS中,利用变形梯度乘法分解方法求解大应变问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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