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Damage Fracture of High-Explosive Mock Subject to Cyclic Loading

机译:循环荷载作用循环载荷的高爆炸模型损伤与骨折

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We use four-point bend specimen with a single shallow edge notch to study the fracture process in Mock 900-21, a PBX 9501 high explosive simulant mock. Subject to monotonic loading we determine quantitatively the threshold load for macroscopic crack initiation from the notch tip. The four-point bend specimen is then subject to cyclic loading in such a way that during the first cycle, the applied force approaches but does not exceed the threshold load determined from the monotonic loading test and in the subsequent cycles, the overall maximum deformation is maintained to be equal to that of the first cycle. It is expected and is also confirmed that no macroscopic damage and cracking occur during the first cycle. However, we observe that sizable macroscopic crack is generated and enlarged during the subsequent cycles, even though the applied force never exceeds the threshold load. Details of the process of damage formation, accumulation, and crack extension are presented and the mechanical mechanism responsible for such failure process is postulated and discussed.
机译:我们使用四点弯曲标本用单一的浅边缘凹口,在Mock 900-21中研究裂缝过程,PBX 9501高爆炸模拟嘲笑。受单调加载的影响,我们定量地确定从凹口尖端的宏观裂纹启动的阈值负载。然后,四点弯曲标本以这样的方式进行循环加载,使得在第一周期期间,施加的力方法但不超过从单调负载测试和随后的循环确定的阈值载荷,总体最大变形是保持等于第一个周期的那个。预计,还证实在第一周期期间没有发生宏观损伤和裂缝。然而,我们观察到,即使施加的力从未超过阈值载荷,也可以观察到在随后的循环期间产生并扩大的巨大宏观裂缝。提出了损伤形成,积累和裂缝扩展的细节,并假设并讨论负责这种失效过程的机械机制。

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