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A variational principle of elastoplasticity and its application to the modeling of frictional materials

机译:弹塑性的变分原理及其在摩擦材料建模中的应用

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摘要

Starting from a thermomechanical description of elastoplasticity, a stress-based variational principle is derived. The principle, which generalizes von Mises’s principle of maximum plastic dissipation, reproduces the conventional elastic/hardening-plastic framework applicable to metals as a special case and further proves to be suitable for developing constitutive models for frictional materials. Application of the principle to the isotropic and triaxal compression behaviour of sands is considered by means of a non-conventional extension of the modified Cam clay model. The new model allows for the specification of arbitrary stress-dilatancy relations without altering the yield potential or introducing a separate flow potential. Moreover, the elastoplastic tangent modulus is always symmetric, regardless of the degree of apparent nonassociativity.
机译:从弹塑性的热力学描述开始,得出了基于应力的变分原理。该原理概括了冯·米塞斯(von Mises)最大的塑料耗散原理,在特殊情况下复制了适用于金属的常规弹性/硬化塑料框架,并进一步证明适用于开发摩擦材料的本构模型。通过修改后的Cam黏土模型的非常规扩展,可以考虑将该原理应用于砂的各向同性和三轴压缩行为。新模型允许指定任意应力-剪胀关系,而无需改变屈服电位或引入单独的流动电位。而且,无论表观非缔合程度如何,弹塑性切线模量始终是对称的。

著录项

  • 作者

    Krabbenhøft, K.;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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