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ON OBTAINING MATERIAL PARAMETERS FOR GENERAL PURPOSE FINITE ELEMENT MODELS

机译:通用有限元模型的材料参数获取

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In general purpose finite element modeling, constitutive relations are vital because they are expected to represent the behavior of a material at different strains, temperatures and strain rates equally well. In order to add to the applicability of a finite element model, therefore, material parameters appearing in constitutive relations need to be identified in a general manner. This paper uses an illustrative example to show how this may be achieved by means of a multi-objective identification framework. The selected material, constitutive law, and data are, respectively, Ti-6Al-4V alloy, the Johnson-Cook metalplasticity model, and compression quasi-static and dynamic Hopkinson bar experiments with varying temperature and strain rates [1,2]. The effect of interactions among model parameters is discussed. Independent quasi-static and high-rate shear punch test simulations are also performed and compared to experimental data to verify the viability of the identified parameters. Extensions for further generalization of the identification process are pointed out.
机译:在通用的有限元建模中,本构关系至关重要,因为本构关系被期望能够很好地表示材料在不同应变,温度和应变速率下的行为。因此,为了增加有限元模型的适用性,需要以一般方式识别本构关系中出现的材料参数。本文使用一个说明性示例来说明如何通过多目标标识框架来实现这一目标。选择的材料,本构律和数据分别是Ti-6Al-4V合金,Johnson-Cook金属塑性模型以及在不同温度和应变速率下的压缩准静态和动态Hopkinson条形实验[1,2]。讨论了模型参数之间相互作用的影响。还执行了独立的准静态和高速剪切冲头测试模拟,并将其与实验数据进行比较,以验证所确定参数的可行性。指出了用于进一步概括识别过程的扩展。

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