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Calibration of the constitutive equations for materials with different levels of strength and plasticity characteristic based on the uniaxial tensile test data

机译:基于单轴拉伸试验数据的不同强度和塑性特性的材料构成方程的校准

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Today finite elements method (FEM) modeling and calculation are used for analysis current state and forecasting reliability lifetime period of components and constructions. Essential issues for correctness of obtained results in FEM analysis are: proper inteipretation of boundary conditions and right constitutive equation of material in terms of high stresses and strains. Standard procedure obtaining of material constitutive relation directly from experimental tensile test data does not proper result for every type of material. Method of constitutive equation creation for elastic-plastic material for a high level of plasticity based on data obtained during tensile test is presented. The proposed calibration method was verified on materials with different levels of strength and plasticity characteristics: S355JR and 42CrMo4 steels and ADI cast iron. Plastic deformation level, triaxiality stress state parameter and Lode factor were taken into account during created of the constitutive equation.
机译:如今,有限元方法(FEM)建模和计算用于分析电流状态和预测元件和结构的可靠性寿命期。在有限元分析中获得的正确性的基本问题是:在高应力和菌株方面适当地重叠边界条件和材料的右组成方程。标准程序直接从实验拉伸试验数据获得材料本构关系对每种类型的材料都不适当的结果。提出了基于拉伸试验中获得的高水平可塑性的弹性塑料材料的本构型方程创建方法。在具有不同水平的强度和可塑性特性的材料上验证了所提出的校准方法:S355JR和42Crmo4钢和Adi铸铁。在构成方程产生期间考虑了塑性变形水平,三轴性应力状态参数和液位因子。

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