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Laser-generated shock wave attenuation aimed at microscale pyrotechnic device design

机译:激光产生的冲击波衰减旨在MicrosseChnic设备设计

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To meet the rising demand for miniaturizing the pyrotechnic device that consists of donor/acceptor pair separated by a bulkhead or a thin gap, the shock initiation sensitivity in the microscale gap test configuration is investigated. For understanding the shock attenuation within a gap sample (304 stainless steel) thickness of 10~800 μm, the laser-generated shock wave in water confinement is adopted. The shock properties are obtained from the free surfacevelocity by making use of a velocity interferometer system for any reflector (VISAR). Analytical models for plasma generation in a confined geometry and for evolution and decay of shock waves during the propagation are considered. The shape and amplitude of the laser-driven initial pressure load and its attenuation pattern in the gap are effectively controlled for targeting the microscale propagation distance and subsequent triggering pressure for the acceptor charge. The reported results are important in the precise controlling of the shock strength during the laser initiation of microscale pyrotechnic devices.
机译:为了满足由由舱壁或薄隙分开的供体/受体对的烟尘/受体对组成的烟火装置的需求不断提高,研究了微观差距测试配置中的冲击起始灵敏度。为了理解间隙样品(304不锈钢)厚度为10〜800μm的冲击衰减,采用激光产生的冲击波在水限制中。通过使用用于任何反射器(VISAR)的速度干涉仪系统,从自由表面透视获得冲击性能。考虑了狭窄的几何形状中等离子体生成的分析模型以及在传播期间的冲击波进化和衰减。为了靶向微观传播距离和随后的接收压力,有效地控制激光驱动初始压力负荷的形状和振幅及其在间隙中的衰减图案。报道的结果在激光启动过程中的冲击强度的精确控制微观烟道器件期间的精确控制。

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