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首页> 外文期刊>Journal of teoretical and applied mechanics >FINITE STRAIN FORMULATION OF ELASTO-PLASTICITY WITHOUT YIELD SURFACE: THEORY, PARAMETER IDENTIFICATION AND APPLICATIONS
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FINITE STRAIN FORMULATION OF ELASTO-PLASTICITY WITHOUT YIELD SURFACE: THEORY, PARAMETER IDENTIFICATION AND APPLICATIONS

机译:无屈服面的有限塑性弹塑性有限元公式:理论,参数识别及应用

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摘要

In this study, a finite strain formulation of elasto-plasticity without the yield surface is analyzed. It is found that the presented model allows for a good description of the elasto-plastic response for many metallic materials. Furthermore, it is noted that the model involving a limited number of material parameters is able to capture such effects as indefinite elastic limit, strain hardening, strain softening and the Bauschinger effect. An algorithm for the evaluation of constants is described and the determined values are given for NC high carbon tool steel, copper, brass, Inconel alloy, tungsten heavy alloy and aluminum.
机译:在这项研究中,分析了没有屈服面的弹塑性有限应变公式。发现所提出的模型可以很好地描述许多金属材料的弹塑性响应。此外,应注意的是,涉及有限数量的材料参数的模型能够捕获不确定的弹性极限,应变硬化,应变软化和包辛格效应等效应。描述了一种常数评估算法,并给出了NC高碳工具钢,铜,黄铜,Inconel合金,钨重合金和铝的确定值。

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