TNBA/MTNP 最低共晶混合物的热力学和能量特性

Xiaolan Song , Zhihong Yu , Kanghui Jia , Dan Song , Yi Wang , Chongwei An , Fengsheng Li
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引用次数: 0

摘要

鉴于目前浇铸固化炸药液体载体 TNT 的低密度、能量水平降低和装填收缩孔所带来的挑战,研究低熔共晶材料作为 TNT 的潜在替代品已成为研究的焦点。通过采用溶剂-非溶剂法,合成了 TNBA(2,4,6-三硝基-3-溴苯甲醚)/MTNP(1-甲基-3,4,5-三硝基吡唑)的最低共晶混合物,与 TNT 相比,其熔点适中,能级明显提高。对最低共晶混合物进行了全面的 SEM、EDS、IR、XRD 和 XPS 分析,证实 TNBA 和 MTNP 之间不存在任何化学作用,并肯定了它们之间卓越的兼容性。此外,还探讨了最低共晶混合物的热分解行为和机理,测试了其机械敏感性,并使用 EXPLO-5 软件评估了其引爆性能。最低共晶混合物的热分解参数与前体材料密切相关,热分解动力学模型函数被确定为詹德函数。最低共晶的冲击灵敏度为 48.1 厘米,摩擦灵敏度为 12%。此外,最低共晶混合物的密度超过了 1.8 克/立方厘米,其爆炸速度接近 8000 米/秒,明显超过了 TNT 的爆炸性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Thermodynamics and energy properties of the lowest eutectic mixture of TNBA/MTNP

Thermodynamics and energy properties of the lowest eutectic mixture of TNBA/MTNP

In light of the challenges posed by the low density, diminished energy levels, and shrinkage holes in the loading arise of the current cast-cured explosive liquid vehicle, TNT, the investigation of low-melting eutectic materials as potential substitutes for TNT has emerged as a focal point of research. By employing the solvent-nonsolvent method, the lowest eutectic mixture of TNBA(2,4,6-trinitro-3-bromoanisole)/MTNP(1-methyl-3,4,5-trinitropyrazole) was synthesized, distinguished by a moderate melting point and markedly elevated energy levels as compared to TNT. Comprehensive SEM, EDS, IR, XRD, and XPS analyses were conducted on the lowest eutectic mixture, substantiating the absence of any chemical interaction between TNBA and MTNP and affirming their exceptional compatibility. Moreover, an exploration into the thermal decomposition behavior and mechanism of the lowest eutectic mixture was undertaken, its mechanical sensitivity was tested, and its detonation performance was evaluated by EXPLO-5 software. The thermal decomposition parameters of the lowest eutectic mixture closely paralleled those of the precursor materials, with the thermal decomposition kinetics model function being identified as the Jander function. The impact sensitivity of the lowest eutectic was 48.1 cm and the friction sensitivity was 12%. Furthermore, the density of the lowest eutectic mixture surpassed 1.8 g/cm3, and its detonation velocity approached 8000 m/s, markedly surpassing the explosive performance of TNT.

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