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首页> 外文期刊>Biomechanics and modeling in mechanobiology >The modelling of fibre reorientation in soft tissue
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The modelling of fibre reorientation in soft tissue

机译:软组织中纤维重新定向的建模

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In this paper, a hyperelastic and thermodynamically consistent model for soft tissue is developed that is able to describe the change of the initial orientation of the collagen fibres. Full numerical implementation is considered as well. The collagen architecture is assumed to reorient driven by a specific thermodynamical force. The anisotropy is described by a strain energy function, which is decomposed into a part related to the matrix and a part related to the fibres. The initial fibre orientation is defined by a structural tensor, while the current orientation is described by a time-dependent structural tensor, which results from the initial one by a rotational transformation. The rotation tensor is obtained via an integration process of a rate tensor, which depends on an adequately defined thermodynamical force. The integration is achieved via an exponential map algorithm, where it is shown that the rotation is necessarily a two-parametric one. Efficiency of the proposed formulation is demonstrated using some numerical examples.
机译:在本文中,开发了一种用于软组织的超弹性和热力学一致的模型,该模型能够描述胶原纤维的初始方向的变化。还考虑了完整的数值实现。假定胶原结构由特定的热力学力驱动重新定向。各向异性由应变能函数描述,该函数分解为与基体有关的部分和与纤维有关的部分。初始纤维取向是由结构张量定义的,而当前纤维取向是由时间相关的结构张量描述的,该时间依赖于结构张量,它是通过旋转变换从初始的张量中得出的。旋转张量是通过速率张量的积分过程获得的,该速率张量取决于适当定义的热力学力。积分是通过指数映射算法实现的,其中显示旋转必须是两参数旋转。通过一些数值实例证明了所提出配方的有效性。

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