Suppr超能文献

生物医学应用中形状记忆合金行为的计算研究。

Computational studies of shape memory alloy behavior in biomedical applications.

作者信息

Petrini Lorenza, Migliavacca Francesco, Massarotti Paolo, Schievano Silvia, Dubini Gabriele, Auricchio Ferdinando

机构信息

Dipartimento di Meccanica Strutturale, Università di Pavia, Via Ferrata 1, 27100 Pavia, Italy.

出版信息

J Biomech Eng. 2005 Aug;127(4):716-25. doi: 10.1115/1.1934203.

Abstract

BACKGROUND

Nowadays, shape memory alloys (SMAs) and in particular Ni-Ti alloys are commonly used in bioengineering applications as they join important qualities as resistance to corrosion, biocompatibility, fatigue resistance, MR compatibility, kink resistance with two unique thermo-mechanical behaviors: the shape memory effect and the pseudoelastic effect. They allow Ni-Ti devices to undergo large mechanically induced deformations and then to recover the original shape by thermal loading or simply by mechanical unloading.

METHOD OF APPROACH

A numerical model is developed to catch the most significant SMA macroscopic thermo-mechanical properties and is implemented into a commercial finite element code to simulate the behavior of biomedical devices.

RESULTS

The comparison between experimental and numerical response of an intravascular coronary stent allows to verify the model suitability to describe pseudo-elasticity. The numerical study of a spinal vertebrae spacer where the effects of different geometries and material characteristic temperatures are investigated, allows to verify the model suitability to describe shape memory effect.

CONCLUSION

the results presented show the importance of computational studies in designing and optimizing new biomedical devices.

摘要

背景

如今,形状记忆合金(SMA),尤其是镍钛合金,在生物工程应用中被广泛使用,因为它们兼具多种重要特性,如抗腐蚀、生物相容性、抗疲劳、磁共振兼容性、抗扭结,还具有两种独特的热机械行为:形状记忆效应和伪弹性效应。它们使镍钛装置能够承受较大的机械诱导变形,然后通过热加载或简单的机械卸载恢复到原始形状。

研究方法

开发了一个数值模型来捕捉形状记忆合金最重要的宏观热机械性能,并将其应用于商业有限元代码中,以模拟生物医学装置的行为。

结果

通过对血管内冠状动脉支架的实验响应和数值响应进行比较,验证了该模型描述伪弹性的适用性。对不同几何形状和材料特征温度影响的脊椎间隔器进行数值研究,验证了该模型描述形状记忆效应的适用性。

结论

所呈现的结果表明了计算研究在设计和优化新型生物医学装置中的重要性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验