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首页> 外文期刊>Journal of Applied Polymer Science >A new development of the strain energy function for hyperelastic materials using a logarithmic strain approach
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A new development of the strain energy function for hyperelastic materials using a logarithmic strain approach

机译:使用对数应变方法的超弹性材料应变能函数的新发展

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The development of a new strain energy function for hyperelastic solids based on the logarithmic strain measure is the objective of the present article, For all possible types of deformation it was shown that the proposed energy function is based on three independent material parameters, Using available experimental data for rubber-like materials from the literature, one may determined the materials parameters by a nonlinear fitting. The available domain of the strain energy function can be determined by plotting the third invariant of logarithmic strain vs the second one, The numerical integration of the experimental data of true stress as a function of the logarithmic strain for various types of deformation yields the strain energy function W, for rubber-like solids, The proposed model involves only one parameter that must be determined by fitting with the experimental data, (C) 2000 John Wiley & Sons, Inc. [References: 28]
机译:基于对数应变测量,为超弹性固体开发新的应变能函数是本文的目标。对于所有可能的变形类型,表明拟议的能量函数基于三个独立的材料参数,并利用现有的实验从文献中获得类橡胶材料的数据,可以通过非线性拟合确定材料参数。应变能函数的可用域可以通过绘制对数应变的第三不变量与第二个变量的关系图来确定。对于各种类型的形变,真实应力的实验数据作为对数应变的函数的数值积分产生了应变能。函数W,对于类橡胶固体,建议的模型仅涉及一个必须通过拟合实验数据确定的参数,(C)2000 John Wiley&Sons,Inc. [参考:28]

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