首页> 外文期刊>Journal of Elasticity >Distortion of Anisotropic Hyperelastic Solids Under Pure Pressure Loading: Compressibility, Incompressibility and Near-Incompressibility
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Distortion of Anisotropic Hyperelastic Solids Under Pure Pressure Loading: Compressibility, Incompressibility and Near-Incompressibility

机译:纯压力载荷下各向异性超弹性固体的变形:可压缩性,不可压缩性和近不可压缩性

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摘要

The purpose of this note is to examine distortion during pure pressure loading for anisotropic hyperelastic solids. We contrast the corresponding issues in compressible and incompressible hyperelasticity, and then use these results to examine nearly incompressible materials. An anisotropic compressible hyperelastic solid will generally exhibit both volume change and distortion under hydrostatic pressure loading. In contrast, an incompressible hyperelastic solid - both isotropic and anisotropic - exhibits no change to its current state of deformation as the hydrostatic pressure is varied. Nearly incompressible hyperelastic materials are compressible, but approach an incompressible response in an appropriate limit. We examine this limiting process in the context of transverse isotropy. The issue arises as to how to implement a nearly incompressible version of a given truly incompressible material model. Here we examine how certain implementations eliminate distortion under pure pressure loading and why alternative implementations do not eliminate the distortion.
机译:本说明的目的是研究各向异性超弹性固体在纯压力加载过程中的变形。我们对比了可压缩和不可压缩的超弹性中的相应问题,然后使用这些结果来检查几乎不可压缩的材料。各向异性可压缩的超弹性固体在静水压力载荷下通常会表现出体积变化和变形。相反,随着流体静压力的变化,不可压缩的超弹性固体-各向同性和各向异性-不会改变其当前的变形状态。几乎不可压缩的超弹性材料是可压缩的,但在适当的范围内接近不可压缩的响应。我们在横向各向同性的背景下研究了这种限制过程。出现有关如何实现给定的真正不可压缩的材料模型的几乎不可压缩的版本的问题。在这里,我们研究了某些实施方式如何消除纯压力负载下的变形,以及为什么其他实施方式无法消除变形。

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