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Modeling of long-term fatigue damage of soft tissue with stress softening and permanent set effects

机译:胁迫软组织长期疲劳损伤的建模与永久凝固效应

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摘要

One of the major failure modes of bioprosthetic heart valves is non-calcific structural deterioration due to fatigue of the tissue leaflets. Experimental methods to characterize tissue fatigue properties are complex and time-consuming. A constitutive fatigue model that could be calibrated by isolated material tests would be ideal for investigating the effects of more complex loading conditions. However, there is a lack of tissue fatigue damage models in the literature. To address these limitations, in this study, a phenomenological constitutive model was developed to describe the stress softening and permanent set effects of tissue subjected to long-term cyclic loading. The model was used to capture characteristic uniaxial fatigue data for glutaraldehyde-treated bovine pericardium and was then implemented into finite element software. The simulated fatigue response agreed well with the experimental data and thus demonstrates feasibility of this approach.
机译:生物人工心脏瓣膜的主要失效模式之一是由于组织小叶的疲劳导致的非钙化结构恶化。表征组织疲劳特性的实验方法既复杂又费时。可以通过隔离材料测试进行校准的本构疲劳模型对于调查更复杂的载荷条件的影响将是理想的。但是,文献中缺乏组织疲劳损伤模型。为了解决这些限制,在这项研究中,开发了一种现象学本构模型来描述承受长期循环载荷的组织的应力软化和永久变形效应。该模型用于捕获戊二醛处理过的牛心包的特征性单轴疲劳数据,然后将其实施到有限元软件中。模拟的疲劳响应与实验数据吻合良好,因此证明了该方法的可行性。

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