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Evolution of plastic zones in dynamically loaded plates using different elastic-viscoplastic laws

机译:使用不同的弹粘塑性定律的动态加载板中塑性区的演变

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摘要

In the framework of viscoplastic theory many different laws were developed, accounting for material behaviors like creep, relaxation or evolution of overstresses. Though each model is able to predict in uni-axial material tests the values of stresses depending on plastic strains and plastic strain rates the question is if solutions of simulations are still realistic if the viscoplastic law is applied on structural deformations. In the present study strain rate sensitive metal plates are subjected to shock waves. The purpose is to compare simulation results obtained with different elastic-viscoplastic laws to experiments in order to determine the most appropriate material model. By subjecting circular metal plates experimentally to shock wave loadings realistic deformation histories are measured. The measurements are compared to simulation results obtained with different viscoplastic laws. The aim is to find out the accuracy of each model concerning the predictions of displacements, shape formings, spread of plastic zones and evolutions of inner bending moments. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在粘塑性理论的框架内,开发了许多不同的定律,以解释材料的行为,例如蠕变,松弛或过应力的演化。尽管每个模型都可以在单轴材料测试中预测取决于塑性应变和塑性应变速率的应力值,但问题是,如果将粘塑性定律应用于结构变形,则模拟的解是否仍然现实。在本研究中,应变率敏感的金属板受到冲击波的作用。目的是将使用不同弹粘塑性定律获得的模拟结果与实验进行比较,以确定最合适的材料模型。通过实验对圆形金属板施加冲击波载荷,可以测量实际的变形历史。将测量结果与通过不同粘塑性定律获得的模拟结果进行比较。目的是找出有关位移,形状形成,塑性区扩展和内部弯矩演变的预测的每个模型的准确性。 (C)2004 Elsevier Ltd.保留所有权利。

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