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A nonlinear dynamic finite element approach for simulating muscular hydrostats

机译:模拟肌肉静水压力的非线性动态有限元方法

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摘要

An implicit nonlinear finite element model for simulating biological muscle mechanics is developed. The numerical method is suitable for dynamic simulations of three-dimensional, nonlinear, nearly incompressible, hyperelastic materials that undergo large deformations. These features characterise biological muscles, which consist of fibres and connective tissues. It can be assumed that the stress distribution inside the muscles is the superposition of stresses along the fibres and the connective tissues. The mechanical behaviour of the surrounding tissues is determined by adopting a Mooney-Rivlin constitutive model, while the mechanical description of fibres is considered to be the sum of active and passive stresses. Due to the nonlinear nature of the problem, evaluation of the Jacobian matrix is carried out in order to subsequently utilise the standard Newton-Raphson iterative procedure and to carry out time integration with an implicit scheme. The proposed methodology is implemented into our in-house, open source, finite element software, which is validated by comparing numerical results with experimental measurements and other numerical results. Finally, the numerical procedure is utilised to simulate primitive octopus arm manoeuvres, such as bending and reaching.
机译:建立了模拟生物肌肉力学的隐式非线性有限元模型。数值方法适用于经受大变形的三维,非线性,几乎不可压缩的超弹性材料的动态仿真。这些特征表征了由纤维和结缔组织组成的生物肌肉。可以假定,肌肉内部的应力分布是沿纤维和结缔组织的应力叠加。周围组织的机械行为通过采用Mooney-Rivlin本构模型确定,而纤维的机械描述被认为是主动应力和被动应力的总和。由于问题的非线性性质,因此对Jacobian矩阵进行了评估,以便随后利用标准的Newton-Raphson迭代过程并使用隐式方案进行时间积分。所提出的方法已实施到我们内部的开放源有限元软件中,该软件通过将数值结果与实验测量值和其他数值结果进行比较来进行验证。最后,利用数值程序来模拟章鱼手臂的原始动作,例如弯曲和伸手。

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  • 作者单位

    Institute of Computer Science, Foundation for Research and Technology-Hellas, Heraklion, Crete 71110, Greece;

    Institute of Computer Science, Foundation for Research and Technology-Hellas, Heraklion, Crete 71110, Greece;

    Institute of Computer Science, Foundation for Research and Technology-Hellas, Heraklion, Crete 71110, Greece;

    Department of Mechanical and Aerospace Engineering, University of Patras, Rio 26500, Greece,Institute of Applied and Computational Mathematics, Foundation for Research and Technology-Hellas, Heraklion, Crete 71110, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    FEM; large deformation; biological muscles; octopus;

    机译:有限元大变形生物肌肉章鱼;

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