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On a class of non-dissipative materials that are not hyperelastic

机译:关于非耗散的非弹性材料

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The purpose of this brief note is to develop fully Eulerian, implicit constitutive equations for the mechanical response of a class of materials that do not dissipate mechanical work in any process. We show that such materials can be modelled by obtaining a form for the Helmholtz potential as a function of the current mass density, the Cauchy stress and certain other parameters that capture anisotropic response. The resulting constitutive equations are of the form A[D] + B[T] = 0, where A and B are functions of the state variables of the system. The class of materials that can be obtained from such a constitutive relation is considerably more general than conventional Green-elastic hyperelastic materials. Such response functions may be suitable for the modelling of biological tissue where, due to the constant remodelling that takes place, there may be no physical meaning to a 'reference configuration'.
机译:本简要说明的目的是为一类不会在任何过程中耗散机械功的材料的机械响应建立完全的欧拉隐式本构方程。我们表明,可以通过获得亥姆霍兹势的形式作为当前质量密度,柯西应力和捕获各向异性响应的某些其他参数的函数来对此类材料进行建模。所得的本构方程的形式为A [D] + B [T] = 0,其中A和B是系统状态变量的函数。可以从这种本构关系获得的材料类别比常规的绿色弹性超弹性材料要普遍得多。这样的响应功能可能适合于生物组织的建模,其中由于发生的不断重塑,“参考配置”可能没有物理意义。

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