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A universal elastic-plastic model correlating load-displacement relation and constitutive parameters for typical testing components

机译:通用弹塑性模型,将载荷-位移关系和本构参数相关联

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A universal elastic-plastic model (UEM) to describe the nonlinear relation among energy, load, displacement and Hollomon constitutive parameters is proposed for various structural components (SCs) by equivalent energy principle (EEP). The model contains only four parameters related to the effective volume of deformed region and the equivalent strain at energy center. A simple approach to determine these parameters is introduced by five times FEA (finite element analysis) calculations. Then, a systematical verification is conducted with both FEA and some experiments. For pure torsion SC, three bending SCs, two indentation SCs, ring compression SC, compact tension SC and small punch test SC, the universal model predicted elastic-plastic load-displacement curves are excellently consistent with the FEA results. Reversely, it can be applied in predicting the Hollomon parameters of materials when the load-displacement curves are known from FEA or experiments.
机译:根据等效能量原理(EEP),提出了一种通用的弹塑性模型(UEM),用于描述能量,载荷,位移和Hollomon本构参数之间的非线性关系。该模型仅包含与变形区域的有效体积和能量中心的等效应变有关的四个参数。五次FEA(有限元分析)计算引入了一种确定这些参数的简单方法。然后,利用有限元分析和一些实验进行了系统的验证。对于纯扭力SC,三个弯曲SC,两个压痕SC,环形压缩SC,紧凑张力SC和小冲模测试SC,通用模型预测的弹塑性载荷-位移曲线与FEA结果非常吻合。相反,当从FEA或实验得知载荷-位移曲线时,它可用于预测材料的Hollomon参数。

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