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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Validation of a path-dependent constitutive model for FCC and BCC metals using “symmetric” Taylor impact
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Validation of a path-dependent constitutive model for FCC and BCC metals using “symmetric” Taylor impact

机译:使用“对称”泰勒冲击力验证FCC和BCC金属的路径相关本构模型

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In this study, the rod-on-rod impact geometry was used at impact speeds of ca. 200 m s~(-1). This is widely believed to be equivalent to the impact of a single rod on an infinitely rigid target and hence an ideal form of the Taylor test as no real target is infinitely rigid. However, our modelling studies showed that the two rods do not behave symmetrically. Two metals were studied: AQ85 iron and XM copper. These were machined into cylinders 15mm long and 5.35mm in diameter. High-speed photographic sequences of the impacts were taken with an interframe time of 5μs. These pictures were then digitised to obtain profiles as a function of time. The bcc material (iron) exhibited the classic‘mushroom’shaped profile which was relatively easy to model as a function of time using existing constitutive models. However, the fcc material (copper) exhibited an additional bulge a few millimetres from the impact face. This behaviour proved impossible to simulate using path-independent models. It proved, however, possible to simulate the behaviour of fcc copper in the‘symmetric’Taylor impact configuration using a newly-developed path-dependent constitutive model. The paper contains the results of this comparison between experiment, theory and modelling.
机译:在这项研究中,杆对杆的冲击几何形状的冲击速度约为。 200 m s〜(-1)。人们普遍认为这等同于单个杆对无限刚性目标的冲击,因此,因为没有实际目标是无限刚性的,所以是泰勒测试的理想形式。但是,我们的建模研究表明,两个杆的行为不对称。研究了两种金属:AQ85铁和XM铜。将它们加工成15mm长,直径5.35mm的圆柱体。冲击的高速摄影序列是在5μs的帧间时间内拍摄的。然后将这些图片数字化以获得时间的分布图。密件抄送材料(铁)具有经典的“蘑菇”形轮廓,使用现有的本构模型可以很容易地将其作为时间的函数进行建模。但是,fcc材料(铜)在距撞击面几毫米处显示出额外的凸起。事实证明,无法使用与路径无关的模型来模拟此行为。然而,事实证明,使用新开发的与路径相关的本构模型可以模拟fcc铜在“对称”泰勒冲击构型下的行为。本文包含了实验,理论和建模之间的比较结果。

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