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采用分子动力学方法对 CL-20/TNAD 共晶炸药的稳定性、感度、能量性能和力学性能的理论研究。

Theoretical investigations on stability, sensitivity, energetic performance, and mechanical properties of CL-20/TNAD cocrystal explosive by molecular dynamics method.

机构信息

Xi'an Research Institute of High-Tech, Xi'an, Shaanxi, 710025, People's Republic of China.

出版信息

J Mol Model. 2022 Feb 12;28(3):58. doi: 10.1007/s00894-022-05049-3.

Abstract

The crystal models of trans-1,4,5,8-tetranitro-1,4,5,8-tetraazadecalin (TNAD), hexanitrohexaazaisowurtzitane (CL-20), and CL-20/TNAD cocrystal explosive with different component ratios were established. Molecular dynamics (MD) method was applied to predict the stability, sensitivity, energetic properties, and mechanical properties. The effect of component ratio on properties of CL-20/TNAD cocrystal explosive was investigated and estimated. Results show that the cocrystal model with component ratio in 1:1 exhibits the highest binding energy and it is more stable. In CL-20/TNAD cocrystal explosive, the interaction energy of trigger bond is increased by 0.8 ~ 15.0 kJ/mol, implying that the mechanical sensitivity of CL-20/TNAD cocrystal explosive is lower than CL-20 and the safety is effectively improved. Compared with raw CL-20, the crystal density of cocrystal explosive is declined by 0.014 ~ 0.193 g/cm, detonation velocity is declined by 39 ~ 755 m/s, and detonation pressure is declined by 0.95 ~ 11.40 GPa; namely the energy density of CL-20/TNAD cocrystal explosive is lower than CL-20. The cocrystal explosives with component ratio in 10:1 ~ 1:1 still exhibit desirable detonation performance and can be regarded as high energy density explosives. The values of tensile modulus, shear modulus, and bulk modulus of CL-20/TNAD cocrystal explosive are decreased by 0.448 ~ 10.285 GPa, 0.195 ~ 4.189 GPa, and 0.194 ~ 6.292 GPa, respectively, Cauchy pressure is increased by 0.990 ~ 5.704 GPa, meaning that the rigidity, fracture strength, and hardness of cocrystal explosive are declined, while the plastic property and ductility are increased and the mechanical properties are improved. The cocrystal model with component ratio in 1:1 has the best mechanical properties. Consequently, the CL-20/TNAD cocrystal explosive with component ratio in 1:1 is more stable and insensitive; it also has high energy density and the best mechanical properties and may be an attractive candidate for high energy explosives.

摘要

建立了不同组分比的反式-1,4,5,8-四硝基-1,4,5,8-四氮杂环辛烷(TNAD)、六硝基六氮杂异伍兹烷(CL-20)和 CL-20/TNAD 共晶炸药的晶体模型。应用分子动力学(MD)方法预测了稳定性、感度、能量性能和力学性能。研究并估算了组分比对 CL-20/TNAD 共晶炸药性能的影响。结果表明,组分比为 1:1 的共晶模型具有最高的结合能,更为稳定。在 CL-20/TNAD 共晶炸药中,引发键的相互作用能增加了 0.815.0 kJ/mol,表明 CL-20/TNAD 共晶炸药的机械感度低于 CL-20,安全性得到有效提高。与原始 CL-20 相比,共晶炸药的晶体密度降低了 0.0140.193 g/cm,爆速降低了 39755 m/s,爆压降低了 0.9511.40 GPa,即 CL-20/TNAD 共晶炸药的能量密度低于 CL-20。组分比为 10:11:1 的共晶炸药仍具有理想的爆轰性能,可视为高能炸药。CL-20/TNAD 共晶炸药的拉伸模量、剪切模量和体积模量分别降低了 0.44810.285 GPa、0.1954.189 GPa 和 0.1946.292 GPa,Cauchy 压力增加了 0.990~5.704 GPa,这意味着共晶炸药的刚性、断裂强度和硬度降低,而塑性和延展性增加,力学性能得到改善。组分比为 1:1 的共晶模型具有最佳的力学性能。因此,组分比为 1:1 的 CL-20/TNAD 共晶炸药更稳定、不敏感;具有较高的能量密度和最佳的力学性能,可能是一种有吸引力的高能炸药候选物。

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