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Thermal Sensitivity of HMX Crystals and HMX-Based Explosives Treated under Various Conditions

机译:在不同条件下处理的HMX晶体和HMX基炸药的热敏性

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The Five-Second Explosion Point (5-SEP) tests and the SEM detections in this research showed that the HMX crystals and the HMX-based explosives treated under different conditions can possess different thermal sensitivities. That is to say, higher impurity, smaller granularity, and worse integrity of HMX crystals can make them more thermally sensitive. The addition of metal or metal oxide particles, especially nanoparticles to HMX can also enhance its thermal sensitivity. Meanwhile, coating of HMX crystals with polymers to form perfect PBX and to keep them undamaged are helpful to decrease their thermal sensitivity. Furthermore, the thermal sensitivity of temperature-aged HMX changes differently in terms of the integrity of its particles. Therefore, it can be concluded that conditions which increase the surface energy of HMX crystals or which make the HMX molecules more active to decompose at lower temperature will increase the thermal sensitivity of HMX. Additionally, the variation in the thermal sensitivity of HMX treated under different conditions is generally more temperate than that of its mechanical sensitivity.
机译:这项研究的五秒爆炸点(5-SEP)测试和SEM检测表明,在不同条件下处理的HMX晶体和HMX基炸药可以具有不同的热敏性。也就是说,较高的杂质,较小的粒度以及较差的HMX晶体可以使它们对热更敏感。向HMX中添加金属或金属氧化物颗粒(尤其是纳米颗粒)也可以增强其热敏性。同时,用聚合物涂覆HMX晶体以形成完美的PBX并保持其不受损坏有助于降低其热敏性。此外,温度老化的HMX的热敏度在其颗粒完整性方面也有所不同。因此,可以得出结论,增加HMX晶体的表面能或使HMX分子在较低温度下更活跃地分解的条件将增加HMX的热敏性。另外,在不同条件下处理的HMX的热灵敏度变化通常比其机械灵敏度更温和。

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