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Modeling of soft tissues with damage

机译:有损伤的软组织建模

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摘要

The characteristic highly non-linear biomechanics of soft tissues within their physiological range often involve degradation of the material properties. Some evidence shows that the stretch patterns induced in this (bio) structures lead to pathological conditions associated with the continuous degradation of the collagen fibres and ground substance of the material. In this work, a computational framework for modeling local anisotropic damage within non-linear geometrical considerations is proposed. Due to tissue and subject variability observed in the mechanical characterization of these types of materials, we adopt a strongly objective approach able to compute the material response for any functional form of the hyperelastic constitutive equations. The numerical examples of three-dimensional displacement and force-driven boundary value problems describe the capability to use multiple material models within the same computational framework. Particularities in the behaviour of the considered material models and the implications of considering damage effects to represent the Mullins effect are discussed.
机译:软组织在其生理范围内的特征性高度非线性生物力学通常涉及材料特性的降低。一些证据表明,在这种(生物)结构中诱导的拉伸模式导致与胶原纤维和材料的底物连续降解相关的病理状况。在这项工作中,提出了在非线性几何考虑范围内建模局部各向异性损伤的计算框架。由于在这些类型的材料的机械表征中观察到的组织和受试者的变异性,我们采用了一种非常客观的方法,能够计算出任何函数形式的超弹性本构方程的材料响应。三维位移和力驱动边界值问题的数值示例描述了在同一计算框架内使用多种材料模型的能力。讨论了所考虑的材料模型的行为的特殊性,以及考虑用损伤效应来代表穆林斯效应的含义。

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