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首页> 外文期刊>Computer Graphics Forum: Journal of the European Association for Computer Graphics >Reformulating Hyperelastic Materials with Peridynamic Modeling
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Reformulating Hyperelastic Materials with Peridynamic Modeling

机译:用王动脉造型重新制定高弹性材料

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摘要

Peridynamics is a formulation of the classical elastic theory that is targeted at simulating deformable objects with discontinuities, especially fractures. Till now, there are few studies that have been focused on how to model general hyperelastic materials with peridynamics. In this paper, we target at proposing a general strain energy function of hyperelastic materials for peridynamics. To get an intuitive model that can be easily controlled, we formulate the strain energy density function as a function parameterized by the dilatation and bond stretches, which can be decomposed into multiple one-dimensional functions independently. To account for nonlinear material behaviors, we also propose a set of nonlinear basis functions to help design a nonlinear strain energy function more easily. For an anisotropic material, we additionally introduce an anisotropic kernel to control the elastic behavior for each bond independently. Experiments show that our model is flexible enough to approximately regenerate various hyperelastic materials in classical elastic theory, including St. Venant-Kirchhoff and Neo-Hookean materials.
机译:白扮网是一种古典弹性理论的制定,其旨在模拟具有不连续性的可变形物体,特别是骨折。到目前为止,几乎没有关于如何用白颌动态模拟一般超弹性材料的研究。在本文中,我们靶向提出颞术材料的一般应变能功能。为了获得可以容易地控制的直观模型,我们将应变能量密度函数作为通过扩张和粘合延伸参数化的功能,可以独立地分解成多个一维功能。为了考虑非线性材料行为,我们还提出了一组非线性基本函数来帮助更容易地设计非线性应变能功能。对于各向异性材料,我们还引入各向异性核,独立地控制每个粘合的弹性行为。实验表明,我们的模型足够灵活,在古典弹性理论中近似再生各种超弹性材料,包括圣槟榔港和新鞍材。

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