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Viscoplastic parameter estimation by high strain-rate experiments and inverse modelling - Speckle measurements and high-speed photography

机译:通过高应变率实验和逆建模估算粘塑性参数-散斑测量和高速摄影

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摘要

A methodology based on inverse modelling for estimating viscoplastic material parameters at high strain-rate conditions is presented. The methodology is demonstrated for a mild steel exposed for compression loading in a split Hopkinson pressure bar arrangement. By using dog-bone shaped specimens nonhomogeneous states of deformation are obtained throughout the entire deformation process. The resulting nonhomogeneous deformation of the specimens is evaluated using digital speckle photography (DSP) to give in-plane point-wise displacement and strain fields. The photographs are captured with a high-speed camera of image converter type, which acquire time resolved images during the impact loading. The experiments are simulated using finite element analysis (FEA), where the material model suggested by Johnson-Cook for high-strain rate conditions are utilised. Experimental and FE-calculated field information are compared in order to estimate the viscoplastic parameter in the Johnson-Cook material model. The estimation is performed by minimising least-square functions that contain the differences in displacements and strains, respectively. The quality of the estimated parameters is studied from statistical point of view. (c) 2006 Elsevier Ltd. All rights reserved.
机译:提出了一种基于逆模型的方法,用于估计高应变速率条件下的粘塑性材料参数。该方法论已被证明是在分开的Hopkinson压力棒装置中暴露于压缩载荷的低碳钢制成的。通过使用狗骨头形试样,在整个变形过程中获得了不均匀的变形状态。使用数字散斑摄影(DSP)评估样品的最终不均匀变形,以给出面内点向位移和应变场。这些照片是使用图像转换器类型的高速相机捕获的,该相机在冲击负载期间获取经过时间解析的图像。使用有限元分析(FEA)对实验进行了模拟,其中使用了Johnson-Cook建议的用于高应变速率条件的材料模型。比较实验和有限元计算的场信息,以估计Johnson-Cook材料模型中的粘塑性参数。通过最小化分别包含位移和应变差异的最小二乘函数来执行估计。从统计的角度研究估计参数的质量。 (c)2006 Elsevier Ltd.保留所有权利。

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