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On criteria for dynamic adiabatic shear band propagation

机译:关于动态绝热剪切带传播的准则

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In this work, we postulate the physical criterion for dynamic shear band propagation, and based on this assumption, we implement a numerical algorithm and a computation criterion to simulate initiation and propagation of dynamic adiabatic shear bands (ASBs). The physical criterion is based on the hypothesis that material inside the shear band region undergoes a dynamic recrystallization process during deformation under high temperature and high strain-rate conditions. In addition to providing a new perspective to the physics of the adiabatic shearbanding process and identifying material properties that play a crucial role in defining the material's susceptibility to ASBs, the proposed criterion is instrumental in numerical simulations of the propagation of ASBs when multi-physics models are adopted to describe and predict the complex constitutive behavior of ASBs in ductile materials. Systematic and large scale meshfree simulations have been conducted to test and validate the proposed criterion by examining the formation, propagation, and post-bifurcation behaviors of ASBs in two materials, 4340 steel and OFHC copper. The effects of heat conduction, in particular the length scale introduced by heat conduction, are also studied. The results of the numerical simulations are compared with experimental observations and a close agreement is found for various characteristic features of ASBs, such as the shear band width, speed of propagation, and maximum temperature.
机译:在这项工作中,我们假设了动态剪切带传播的物理准则,并基于此假设,我们实现了数值算法和计算准则来模拟动态绝热剪切带(ASB)的引发和传播。物理准则基于这样的假设:剪切带区域内的材料在高温和高应变速率条件下变形期间会经历动态再结晶过程。除了为绝热剪切带过程的物理学提供新的视角并确定在定义材料对ASB的敏感性方面起关键作用的材料特性外,当多物理场模型建立时,拟议的标准还有助于对ASB的传播进行数值模拟。用来描述和预测ASB在韧性材料中的复杂本构行为。通过检查4340钢和OFHC铜两种材料中ASB的形成,传播和分叉后的行为,进行了系统的大规模无网格模拟,以测试和验证所提出的标准。还研究了热传导的影响,特别是热传导引入的长度尺度。将数值模拟的结果与实验观察结果进行比较,发现ASB的各种特征(如剪切带宽度,传播速度和最高温度)具有紧密的一致性。

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