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FRACTURE RESPONSE OF EXTERNALLY FLAWED CYLINDRICAL SHELLS TO INTERNAL GASEOUS DETONATION LOADING

机译:外部缺陷圆柱壳与内部气体爆炸载荷的断裂响应

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Experiments were performed to observe the fracture behavior of thin-wall and initially-flawed aluminum tubes to internal gaseous detonation loading. The pressure load, with speeds exceeding 2 km/s, can be characterized as a pressure peak (ranging from 2 to 6 MPa in these experiments) followed by an expansion wave. Flaws were machined as external axial surface notches. Cracks ran both in the upstream and downstream directions as the hoop stress opened up the notch. Different kinds of crack propagation behavior were observed for various loading amplitudes and flaw sizes. For low-amplitude loading and short flaws, cracks tend to run in a helical fashion, whereas for high-amplitude loading and long flaws, cracks tend to bifurcate in addition to running helically. Unless the cracks branched and traveled far enough to meet, resulting in a split tube, they were always arrested. Strain gages were used to monitor the hoop strains at several places on the tubes' external surface. Far away from the notch, tensile vibrations were measured with frequencies matching those predicted by the steady-state Tang (1965) and Simkins (1987) models. Near the notch, compressive strains were recorded as a result of the bulging at the notch. Features in the strain signals corresponding to different fracture events are analyzed.
机译:进行实验以观察薄壁和初始有缺陷的铝管的断裂行为,以内部气体爆炸载荷。压力负荷超过2km / s的速度,可以表征为压力峰(在这些实验中的2至6MPa范围内),然后是膨胀波。缺陷被加工为外部轴向表面凹口。随着箍应力打开凹口,裂缝在上游和下游方向上持续。针对各种装载幅度和缺陷尺寸观察到不同种类的裂缝繁殖行为。对于低振幅负载和短缺陷,裂缝倾向于以螺旋形时尚运行,而对于高振幅负载和长缺陷,除了螺旋跑步之外,裂缝还倾向于分叉。除非裂缝分支并走得足够远,否则导致拆分管,否则它们总是被捕。应变计用于监测管外表面上的几个位置的环箍菌株。远离凹口,用频率与稳态唐(1965)和Simkins(1987)模型相匹配的频率测量拉伸振动。在凹口附近,由于凹口凸出的凸起记录了压缩菌株。分析了对应于不同裂缝事件的应变信号中的特征。

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