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Ultrafast Fiber Bragg Grating Interrogation for Sensing in Detonation and Shock Wave Experiments

机译:超快光纤布拉格光栅询问在爆轰和冲击波实验中的传感

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摘要

Chirped fiber Bragg grating (CFBG) sensors coupled to high speed interrogation systems are described as robust diagnostic approaches to monitoring shock wave and detonation front propagation tracking events for use in high energy density shock physics applications. Taking advantage of the linear distributed spatial encoding of the spectral band in single-mode CFBGs, embedded fiber systems and associated photonic interrogation methodologies are shown as an effective approach to sensing shock and detonation-driven loading processes along the CFBG length. Two approaches, one that detects spectral changes in the integrated spectrum of the CFBG and another coherent pulse interrogation approach that fully resolves its spectral response, shows that 100-MHz–1-GHz interrogation rates are possible with spatial resolution along the CFBG in the 50 μm to sub-millimeter range depending on the combination of CFBG parameters (i.e., length, chirp rate, spectrum) and interrogator design specifics. Results from several dynamic tests are used to demonstrate the performance of these high speed systems for shock and detonation propagation tracking under strong and weak shock pressure loading: (1) linear detonation front tracking in the plastic bonded explosive (PBX) PBX-9501; (2) tracking of radial decaying shock with crossover to non-destructive CFBG response; (3) shock wave tracking along an aluminum cylinder wall under weak loading accompanied by dynamic strain effects in the CFBG sensor.
机译:与高速询问系统耦合的光纤布拉格光栅(CFBG)传感器被描述为监测冲击波和爆轰前传播跟踪事件的强大诊断方法,用于高能量密度冲击物理应用。利用单模CFBG中光谱带的线性分布空间编码,嵌入式光纤系统和相关的光子探查方法被显示为一种沿着CFBG长度感测冲击和爆轰驱动的加载过程的有效方法。两种方法(一种可检测CFBG积分光谱中的光谱变化),另一种可以完全解决其频谱响应的相干脉冲询问方法,表明在50年代沿CFBG的空间分辨率下,可以达到100-MHz–1-GHz的询问速率μm至亚毫米范围,取决于CFBG参数(即长度,线性调频率,频谱)和询问器设计细节的组合。来自多个动态测试的结果用于证明这些高速系统在强和弱冲击压力载荷下的冲击和爆轰传播跟踪性能:(1)PBX-9501塑料粘结炸药(PBX)中的线性爆轰前沿跟踪; (2)跟踪径向衰减冲击,并穿越到无损CFBG响应; (3)CFBG传感器在弱载荷下沿着铝制圆柱体壁跟踪冲击波并伴随动态应变效应。

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