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Hyperelastic Muscle Simulation

机译:超弹性肌肉模拟

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摘要

Biological soft tissues like muscles and cartilages are anisotropic, inhomogeneous, and nearly incompressible. The incompressible material behavior may lead to some difficulties in numerical simulation, such as volumetric locking and solution divergence. Mixed u-P formulations can be used to overcome incompressible material problems. The hyperelastic materials can be used to describe the biological skeletal muscle behavior. In this study, experiments are conducted to obtain the stress-strain behavior of a solid silicone rubber tube. It is used to emulate the skeletal muscle tensile behavior. The stress-strain behavior of silicone is compared with that of muscles. A commercial finite element analysis package ABAQUS is used to simulate the stress-strain behavior of silicone rubber. Results show that mixed u-P formulations with hyperelastic material model can be used to successfully simulate the muscle material behavior. Such an analysis can be used to simulate and analyze other soft tissues that show similar behavior.
机译:诸如肌肉和软骨的生物软组织是各向异性的,不均匀的并且几乎不可压缩。不可压缩的材料行为可能会导致数值模拟中的一些困难,例如体积锁定和溶液发散。混合的u-P配方可用于克服不可压缩的材料问题。超弹性材料可用于描述生物学的骨骼肌行为。在这项研究中,进行实验以获得固体硅橡胶管的应力-应变行为。它用于模拟骨骼肌的拉伸行为。将硅树脂的应力-应变行为与肌肉进行了比较。商业有限元分析程序包ABAQUS用于模拟硅橡胶的应力-应变行为。结果表明,具有超弹性材料模型的混合u-P配方可用于成功模拟肌肉材料的行为。这样的分析可用于模拟和分析其他表现出相似行为的软组织。

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