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Computational Aspects Of A Pseudo-elastic Constitutive Model For Muscle Properties In A Soft-bodied Arthropod

机译:假肢节肢动物肌肉特性的拟弹性本构模型的计算方面

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In this paper we discuss the computational implementation of a new constitutive model that describes the muscle properties in a soft-bodied arthropod. Qualitatively, the muscle tissues behave similar to particle-reinforced rubber and are capable of large non-linear elastic deformations, show a hysteretic behavior, and display stress softening during the first few cycles of repeated loading. Such behavior can be described by the framework of pseudo-elastic transversely isotropic hyperelasticity. The computational model assumes compressible overall response, and is based upon a multiplicative split of the deformation gradient tensor into volumetric and isochoric parts. Details regarding the implementation of the computational model in the context of an implicit finite element solution procedure are presented. In particular, an explicit expression is provided for the material tangent stiffness tensor. Results obtained utilizing the new implementation are also presented.
机译:在本文中,我们讨论了一种新的本构模型的计算实现,该模型描述了软节肢动物的肌肉特性。定性地,在重复加载的前几个周期中,肌肉组织的行为类似于颗粒增强的橡胶,并且具有较大的非线性弹性变形,显示出滞后行为并显示出应力软化。这种行为可以通过拟弹性横向各向同性超弹性框架来描述。该计算模型假定可压缩总体响应,并且基于将变形梯度张量乘以体积和等容部分的方式。提出了有关在隐式有限元求解过程中计算模型的实现的详细信息。特别是,为材料切线刚度张量提供了一个明确的表达式。还介绍了使用新实现获得的结果。

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