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Expansion of cylindrical shells subjected to internal explosive detonations

机译:承受内部爆炸的圆柱壳膨胀

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Two explosively loaded cylindrical shell experiments were conducted to provide experimental data for benchmarking numerical codes. Each shell was subjected to internal high-explosive detonations, which caused it to expand outwardly at strain rates on the order of 10(4) s(-1). At approximately 150 percent strain, multiple plastic instabilities appeared on the surface of these shells in a quasi-periodic pattern. These instabilities continued to develop into bands of localized shear and eventually formed cracks before causing the shell to fragment. Diagnostic equipment on these experiments included a Fabry-Perot interferometer and a fast-framing camera. The experiments and the data obtained from the diagnostic equipment are discussed and illustrated. [References: 8]
机译:进行了两次爆炸性加载的圆柱壳实验,以提供用于基准数字代码的实验数据。每个炮弹都经过内部高爆炸爆,这使炮弹以约10(4)s(-1)的应变速率向外膨胀。在大约150%的应变下,这些壳的表面以准周期模式出现了多种塑性不稳定性。这些不稳定性继续发展为局部剪切带,最终形成裂纹,然后导致壳破裂。这些实验的诊断设备包括Fabry-Perot干涉仪和快速成像相机。讨论和说明了从诊断设备获得的实验和数据。 [参考:8]

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