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Numerical modelling of the fibre-matrix interaction in biaxial loading for hyperelastic soft tissue models

机译:超弹性软组织模型双轴加载中纤维-基体相互作用的数值模拟

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This paper assumes that a neo-Hookean matrix with neo-Hookean fibres is representative of soft tissue. Under this assumption, a unit cell model is proposed to investigate the fibre-matrix interfacial stress field for biological soft tissue under biaxial loadings. In this unit cell model, the soft tissue is treated as a composite where the matrix is unidirectionally reinforced with a single family of aligned fibres. The results are compared with the model of Guo et al., which accounts for the fibre-matrix interfacial stress field, and Qiu and Pence's model, which does not proceed from the assumption that the fibres are themselves neo-Hookean. It is found that the stress representative of the fibre-matrix interface plays an important role in the deformation of the composite, and the model of Guo et al. underestimates this stress under large biaxial deformation.
机译:本文假设具有新霍克纤维的新霍克纤维基质代表软组织。在此假设下,提出了一种晶胞模型来研究双轴载荷下生物软组织的纤维-基质界面应力场。在这种晶胞模型中,软组织被视为复合材料,其中基质由单列排列的纤维单向增强。将结果与考虑到纤维-基质界面应力场的Guo等人的模型,以及Qiu和Pence的模型进行了比较,后者并没有基于纤维本身是新霍克纤维的假设。研究发现,纤维-基体界面的应力代表在复合材料的变形中起着重要作用,Guo等人的模型。低估了双轴大变形下的应力。

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