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An Experimental-Numerical Combined Method to Determine the True Constitutive Relation of Tensile Specimens after Necking

机译:一种实验 - 数值组合方法,以确定缩颈后拉伸试样的真实组成关系

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摘要

To obtain the material true constitutive relation of tensile specimens after necking, we proposed an experimental-numerical combined method (ENM) based on the simple tension test results and finite element analysis (FEA). An iterative scheme was used to minimize the errors between the simulated and experimental load-displacement curves by modifying the imported stress-strain data step by step, and the true stress was determined when the error was less than a given infinitesimal value. In addition, we developed a special program to implement this algorithm automatically and save operating time. As a verification, the true stress-strain curves obtained by the traditional analytical method (TAM) and ENM were compared and employed to analyze the large deformation behavior of both cylindrical and rectangular specimens. The results showed that ENM was applicable for both specimens and could achieve an adequate description of the mechanical response of the materials after necking formation more effectively.
机译:为了获得缩颈后拉伸试样的材料真实本构关系,我们提出了一种基于简单的张力测试结果和有限元分析(FEA)的实验性数值组合方法(ENM)。迭代方案用于通过修改进口的应力 - 应变数据逐步来最小化模拟和实验负载 - 位移曲线之间的误差,并且当误差小于给定的无穷大值时确定真正的应力。此外,我们开发了一个特殊程序,自动实现该算法并节省工作时间。作为验证,比较了通过传统的分析方法(TAM)和eNM获得的真正应力 - 应变曲线,并采用圆柱形和矩形标本的大变形行为。结果表明,恩姆适用于两个标本,并且可以更有效地缩放形成后材料的机械响应的适当描述。

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