AbstractMaterial parameter identification using constitutive models of elasticity, viscoelasticity, rate-indepe'/> Identifiability of material parameters in solid mechanics
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Identifiability of material parameters in solid mechanics

机译:实体力学中材料参数的可识别性

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AbstractMaterial parameter identification using constitutive models of elasticity, viscoelasticity, rate-independent plasticity and viscoplasticity has a long history with regard to homogeneous and inhomogeneous deformations. For example, uniaxial tensile tests, pure shear tests, torsion experiments of thin-walled tubes or biaxial tensile tests are used to obtain the material parameters by solving the inverse problem. Frequently, the parameters are determined by numerical optimization tools. In this paper, we investigate some very basic single- and two-layered examples regarding identifiability, because these tests are the basis for more complex geometrical and physical nonlinear problems. These simple examples are the uniaxial tensile/compression case, biaxial tensile tests of a cruciform specimen, torsion of a thin-walled tube, a thick-walled tube under internal pressure and the indentation test. For the thick-walled tube under internal and external pressure with an axial pre-strain with several layers, an analytical solution is provided directly suitable for programming. The aim is to get an understanding whether some problems lead to non-identifiable parameters.
机译: Abstract 使用弹性,粘弹性,与速率无关的可塑性和本构模型对材料参数进行识别关于均匀和不均匀变形,粘塑性具有悠久的历史。例如,使用单轴拉伸试验,纯剪切试验,薄壁管的扭转试验或双轴拉伸试验来解决反问题,从而获得材料参数。通常,参数是由数值优化工具确定的。在本文中,我们研究了一些有关可识别性的非常基本的单层和两层示例,因为这些测试是更复杂的几何和物理非线性问题的基础。这些简单的例子是单轴拉伸/压缩情况,十字形试样的双轴拉伸测试,薄壁管的扭转,内压下的厚壁管的扭转和压痕测试。对于在内部和外部压力下具有几层轴向预应变的厚壁管,提供了直接适合编程的分析解决方案。目的是了解某些问题是否导致无法识别的参数。

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