A Modular Nitinol Model with Lode Angle-Based Asymmetry and Improved Representation of the Superelastic Loops for Medical Device Applications

John Mould, Alex Kelly, Ashley Peterson, Nuno Rebelo
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Abstract

We describe a phenomenological constitutive model for representing Nitinol in medical device applications. The intent is to capture some of the response features important to medical device applications that are neglected in prevalent state of the art models. These features include better representation of the response under compression which is needed to assess bending, and asymmetric plastic yield. We will refer to this implementation as the Thornton Tomasetti (TT) model to distinguish it from other existing implementations that have evolved from the baseline underlying theory. We implement the model in a modular form suitable for use in commercial finite element software and describe initialization from laboratory test data.
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基于洛德角不对称的模块化镍钛诺模型,以及医疗器械应用中超弹性环的改进表示方法
我们描述了一种现象学构成模型,用于表示医疗设备应用中的镍钛诺。该模型旨在捕捉对医疗设备应用非常重要的一些响应特征,而这些特征在目前流行的模型中被忽视了。这些特征包括更好地表示压缩下的响应(这是评估弯曲和非对称塑性屈服所必需的)。我们将这一实施方案称为 Thornton Tomasetti (TT) 模型,以区别于其他从基础理论发展而来的现有实施方案。我们以模块化形式实现该模型,适合在商用有限元软件中使用,并介绍了根据实验室测试数据进行初始化的情况。
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