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Utilizing Microwave Susceptors to Visualize Hot-Spots in Trinitrotoluene

机译:利用微波感受器可视化三硝基甲苯中的热点

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In recent years, researchers have shown that the inclusion of susceptors in monomolecular explosives increases microwave absorption where the monomolecular explosive alone is nearly transparent to the microwave energy. In this study, graphite particles are used to absorb microwave energy and decompose trinitrotoluene 1,3,5 (TNT). Aluminum particles were also used with TNT but very little energy was absorbed. Thermal and electric properties of the susceptor affect microwave energy conversion to thermal energy in explosives. The temperature gradients across the broad face of a cylindrical sample of TNT with and without susceptors were spatially observed using an infrared camera. Hot-spots were observed during 120 seconds exposure to microwave energy at a frequency of 3.3 GHz and found to directly correlate with susceptor concentration. When using graphite, the TNT heated above its melting temperature and decomposed as a vapor.
机译:近年来,研究人员表明,单分子炸药中包含感受器会增加微波吸收,而单分子炸药对微波能量几乎是透明的。在这项研究中,石墨颗粒用于吸收微波能量并分解三硝基甲苯1,3,5(TNT)。铝颗粒也与TNT一起使用,但吸收的能量很少。基座的热和电特性会影响微波能量转换为炸药中的热能。使用红外照相机在空间上观察有或没有基座的TNT圆柱样品的宽表面上的温度梯度。在以3.3 GHz的频率暴露于微波能量的120秒期间观察到了热点,发现热点与感受器浓度直接相关。当使用石墨时,TNT加热到其熔化温度以上并分解为蒸气。

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