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Adiabatic shear fractures and fragments of cylindrical structures under internal explosive loading

机译:内部爆炸载荷下圆柱结构的绝热剪切裂缝和碎片

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Adiabatic shear band (ASB) is a typical response of materials under high strain rate loading. Based on the instability analysis of the thermoviscoplastic constitutive model, a new rate-dependent failure criteria is proposed, which links dynamical evolution of ASB with macro mechanical critical conditions, and is successfully applied to account for the shear fracture mode of cylindrical structures subjected to explosive loading. Using finite element method, the transient failure procedure and shearing fragments induced by ASB is simulated, and the calculated fracture profile shows a good agreement with the experimental results. The failure analysis indicates that the rate-dependent failure criteria, as well as impulsive loading, govern the shear damage mode of the structures.
机译:绝热剪切带(ASB)是材料在高应变速率负荷下的典型响应。基于Thermoviscoplastic组成型模型的不稳定分析,提出了一种新的速率依赖性故障标准,这与宏机械临界条件的动态演化联系起来,成功地应用于对经受爆炸性的圆柱结构的剪切断裂模式进行涂抹。装。使用有限元方法,模拟ASB诱导的瞬态故障过程和剪切片段,并且计算出的断裂曲线与实验结果显示出良好的一致性。故障分析表明速率相关的故障标准以及脉冲负载,控制结构的剪切损伤模式。

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