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首页> 外文期刊>Mathematics and mechanics of solids: MMS >On planar biaxial tests for anisotropic nonlinearly elastic solids. A continuum mechanical framework
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On planar biaxial tests for anisotropic nonlinearly elastic solids. A continuum mechanical framework

机译:在各向异性的非线性弹性固体的平面双轴试验中。连续的机械框架

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摘要

The mechanical testing of anisotropic nonlinearly elastic solids is a topic of considerable and in_creasing interest. The results of such testing are important, in particular, for the characterization of the material properties and the development of constitutive laws that can be used for predictive purposes. How_ever, the literature on this topic in the context of soft tissue biomechanics, in particular, includes some papers that are misleading since they contain errors and false statements. Claims that planar biaxial testing can fully characterize the three-dimensional anisotropic elastic properties of soft tissues are incorrect. There is there_fore a need to clarify the extent to which biaxial testing can be used for determining the elastic properties of these materials. In this paper this is explained on the basis of the equations of finite deformation transversely isotropic elasticity, and general planar anisotropic elasticity. It is shown that it is theoretically impossible to fully characterize the properties of anisotropic elastic materials using such tests unless some assumption is made that enables a suitable subclass of models to be preselected. Moreover, it is shown that certain as_sumptions underlying the analysis of planar biaxial tests are inconsistent with the classical linear theory of orthotropic elasticity. Possible sets of independent tests required for full material characterization are then enumerated.
机译:各向异性非线性弹性固体的机械测试是一个引起人们极大兴趣的话题。这种测试的结果尤其对于表征材料特性和开发可用于预测目的的本构法非常重要。然而,特别是在软组织生物力学的背景下,关于该主题的文献包括一些具有误导性的论文,因为它们包含错误和错误陈述。声称平面双轴测试可以充分表征软组织的三维各向异性弹性特性是不正确的。因此,需要澄清可用于确定这些材料的弹性性能的双轴测试的程度。在本文中,这是基于有限变形,横向各向同性弹性和一般平面各向异性弹性的方程式进行解释的。结果表明,除非进行一些能够预先选择合适的模型子类的假设,否则使用这种测试理论上不可能完全表征各向异性弹性材料的特性。此外,表明平面双轴试验分析的某些假设与正交异性弹性的经典线性理论不一致。然后列举了完整材料表征所需的可能的独立测试集。

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