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首页> 外文期刊>International Journal of Plasticity >High strain-rate tensile testing and viscoplastic parameter identification using microscopic high-speed photography
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High strain-rate tensile testing and viscoplastic parameter identification using microscopic high-speed photography

机译:高应变率拉伸试验和使用微观高速摄影的粘塑性参数识别

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摘要

A combined experimentalumerical method for determination of constitutive parameters in high strain-rate material models is presented. Impact loading, using moderate projectile velocities in combination with small specimens (sub mm) facilitate tensional strain rates in the order of 10(4)-10(5) s(-1). Loading force is measured from one-dimensional wave propagation in a rod using strain gauges and deformation is monitored with a high-speed camera equipped with a microscope lens. A sequence of digital photographs is taken during the impact loading and the plastic deformation history of the specimen is quantified from the photographic record. Estimation of material parameters is performed through so called inverse modelling in which results from repeated FE-simulations are compared with experimental results and a best choice of constitutive parameters is extracted through an iterative optimisation procedure using the simplex method. Results are presented from a preliminary tension test of a mild steel (A533B) at a strain rate well over 10(4) s(-1). The sensitivity of the evaluated material parameters to errors in measured quantities is studied. The method, especially the optical technique for measurement of deformation will be further developed. (C) 2003 Elsevier Ltd. All rights reserved. [References: 27]
机译:提出了一种结合实验/数值方法确定高应变速率材料模型中的本构参数的方法。冲击载荷,使用中等的射弹速度与小样本(亚毫米)结合,可以使拉伸应变率达到10(4)-10(5)s(-1)的数量级。使用应变仪从杆中的一维波传播中测量加载力,并使用配备显微镜镜头的高速相机监控变形。在冲击载荷过程中拍摄了一系列数码照片,并从照片记录中量化了样品的塑性变形历史。材料参数的估计是通过所谓的逆模型进行的,其中将重复的有限元模拟得到的结果与实验结果进行比较,并通过使用单纯形法的迭代优化程序来提取本构参数的最佳选择。结果来自低速钢(A533B)在超过10(4)s(-1)的应变速率下的初步拉伸测试。研究了评估的材料参数对测量数量误差的敏感性。该方法,特别是用于测量变形的光学技术将得到进一步发展。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:27]

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