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首页> 外文期刊>Journal of Materials Processing Technology >Inverse computational method for constitutive paramenters obtained from torsion, plane-strain and axisymmetric compression tests
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Inverse computational method for constitutive paramenters obtained from torsion, plane-strain and axisymmetric compression tests

机译:通过扭转,平面应变和轴对称压缩试验获得的本构参数的逆计算方法

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In this work the authors seek to clarify two different requirements for torsion and compression tests in order to solve the problem of identifying constitutive parameters using an inverse computational method. Considerations are restricted in thepresent research to the proper use of available experimental data in conjunction with an existing constitutive model. For ease of description, a simple power-law constitutive equation has been chosen that can illustrate the different requirements in anelegant manner. First, it will be shown that the determination of a unique set of constitutive parameters during the experimental-computational inverse solution of the torsion test requires either sets of load-deformation and load-deformation-rate data,or a number of load-deformation measurements each with a different constant twist rate. These data are used to define the required cost function. It will also be shown that for the torsion test, the strain hardening index can be found accurately using asingle set of load-deformation data. A new cost function based on load-deformation-rate data will be introduced for the torsion test for determining accurately the strain rate index. The load-deformation-based cost function will be used subsequently inconjunction with the new cost function for proper determination of all parameters during the inverse solution of the torsion test. It will be shown further that for the case of plane strain and axisymmetric compression tests, one set of load-deformationdata alone suffices to identify the constitutive parameters uniquely.
机译:在这项工作中,作者试图阐明扭转和压缩试验的两种不同要求,以解决使用逆计算方法识别本构参数的问题。在本研究中,考虑因素仅限于结合现有的本构模型正确使用可用的实验数据。为了便于描述,选择了一个简单的幂律本构方程,该方程可以优雅地说明不同的要求。首先,将表明,在扭转测试的实验计算逆解过程中,一组唯一的本构参数的确定需要一组载荷变形和载荷变形率数据,或者一组载荷变形测量值每个都有不同的恒定扭曲率。这些数据用于定义所需的成本函数。还将显示,对于扭转试验,可以使用一组单独的载荷-变形数据准确地找到应变硬化指数。将引入基于载荷-变形率数据的新成本函数进行扭转试验,以准确确定应变率指标。随后将基于负载变形的成本函数与新的成本函数结合使用,以在扭转测试的逆解过程中正确确定所有参数。还将显示,对于平面应变和轴对称压缩测试,仅一组载荷变形数据就足以唯一地识别本构参数。

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