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Mechanical Changes in Materials Caused by Explosive Precompression Shock Waves and the Effects on Fragmentation of Exploding Cylinders

机译:爆炸性预压缩冲击波引起的材料的机械变化及爆炸汽缸碎片的影响

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Explosive driven rapid fracture in a structural body will be preceded by a compression process, and the compression effects on mechanical properties of the materials are clearly important to understand shock-induced failure such as spall or fragmentation phenomena. In this study, incident shock waves in plate specimens of aluminum A2017-T4 and 304 stainless steel are generated by plane detonation waves in the high explosive PETN initiated using wire-row explosion techniques, and the compressed specimens are successfully recovered without severe damages due to the reflected expansion waves with use of momentum trap method. A hydro code, Autodyn-2D is applied to determine test conditions: thicknesses of explosives, attenuators, specimens and momentum traps and to evaluate experimental results, simulating time-histories of stress waves in the layers of the test assembly. Microhardness distributions in cross-sections, tensile strength, fracture ductility and yield stress are measured for the recovered specimens, using miniature tensile and compression test pieces machined from them. They are compared with those of virgin specimens, showing significant increase of hardness, tensile and yield strength and remarkable reduction of elongation and ductility for shocked specimens. The results are taken into consideration for evaluation of experimental fragmentation energy in cylinder explosion tests.
机译:在一个结构体炸药驱动的快速骨折将由压缩处理前面,并在材料的机械性能的影响压缩显然重要的是了解冲击引起的故障如剥落或碎裂现象。在这项研究中,在铝A2017-T4和304不锈钢板试件入射的冲击波是由平面爆轰波在高能炸药使用导线排爆炸技术PETN发起产生,并且被压缩的试样而不会严重损害是由于成功地恢复反射膨胀波与使用动量陷阱方法。水力代码,AUTODYN-2D被施加到确定的测试条件:炸药,衰减器,标本和动量陷阱厚度,并评价试验结果,模拟应力波的时程在测试的层组件。在横截面,拉伸强度,断裂韧性和屈服应力显微硬度分布测定回收的试样,使用微型的拉伸和压缩试验片从它们加工。它们与那些处女标本,示出了用于震惊试样的硬度,抗拉强度和屈服强度和伸长率的显着降低和延展性显著相比增加。结果考虑到在气瓶爆炸试验中的试验破裂能的评价。

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