横向各向同性分散材料的构成模型

A. Amendola, J. de Castro Motta, G. Saccomandi, L. Vergori
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引用次数: 0

摘要

由于生物材料本身的复杂性,为其机械行为建模并非易事。尽管面临挑战,一些研究人员还是提出了数学模型来描述软组织机械响应的某些方面。由于大多数生物材料都是由胶原蛋白和/或弹性纤维增强的不同成分组成的复合材料,因此材料的分散性和各向异性是不可忽视的。在弹性理论中,已经建立了多个各向异性材料模型。但对于各向异性的分散材料来说,情况却并非如此。文献中现有的材料分散模型仅适用于各向同性材料。本文的目的是在微分型简单材料理论中,为横向各向同性体中的各向异性色散引入一个非常通用的模型。我们的模型有望为更好地理解纤维增强软材料的机械响应迈出第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A constitutive model for transversely isotropic dispersive materials
Due to their intrinsic complexity, it is not easy to model the mechanical behaviour of biomaterials. Despite the challenges they faced, some researchers have presented mathematical models to describe some aspects of the mechanical response of soft tissues. Since most of the materials of biological interest are composites made of different constituents reinforced by collagen and/or elastin fibres, material dispersion and anisotropy are non-negligible. Within the theory of elasticity, several models for anisotropic materials have been developed. The same cannot be said for anisotropic dispersive materials. The models available in the literature that account for material dispersion are valid only for isotropic materials. This paper aims at introducing a very general model for anisotropic dispersion in transversely isotropic bodies within the theory of simple materials of differential type. Our model has the potential to represent a first step towards a better understanding of the mechanical response of fibre-reinforced soft materials.
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