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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >A novel constitutive model of skeletal muscle taking into account anisotropic damage.
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A novel constitutive model of skeletal muscle taking into account anisotropic damage.

机译:考虑到各向异性损伤的新型骨骼肌本构模型。

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摘要

The purpose of this study is to develop a constitutive model of skeletal muscle that describes material anisotropy, viscoelasticity and damage of muscle tissue. A free energy function is described as the sum of volumetric elastic, isochoric elastic and isochoric viscoelastic parts. The isochoric elastic part is divided into two types of shear response and the response in the fiber direction. To represent the dependence of the mechanical properties on muscle activity, we incorporate a contractile element into the model. The viscoelasticity of muscle is modeled as a three-dimensional model constructed by extending the one-dimensional generalized Maxwell model. Based on the framework of continuum damage mechanics, the anisotropic damage of muscle tissue is expressed by a second-order damage tensor. The evolution of the damage is assumed to depend on the current strain and damage. The evolution equation is formulated using the representation theorem of tensor functions. The proposed model is applied to the experimental data on tensile mechanical properties in the fiber direction and the compression properties in the fiber and cross-fiber directions in literature. The model can predict non-linear mechanical properties and breaking points.
机译:这项研究的目的是开发一种骨骼肌的本构模型,该模型描述材料的各向异性,粘弹性和肌肉组织的损伤。自由能函数被描述为体积弹性,等容弹性和等容粘弹性部分的总和。等速弹性部分分为剪切响应和纤维方向响应两种。为了表示机械性能对肌肉活动的依赖性,我们将可收缩元素纳入模型。肌肉的粘弹性建模为通过扩展一维广义Maxwell模型而构建的三维模型。基于连续损伤力学的框架,肌肉组织的各向异性损伤由二阶损伤张量表示。假定损坏的演变取决于当前的应变和损坏。使用张量函数的表示定理来制定演化方程。将该模型应用于文献中有关纤维方向拉伸机械性能和纤维及交叉纤维方向压缩性能的实验数据。该模型可以预测非线性机械性能和断裂点。

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