Su Chenghai, Guo Huanguo, Zheng Yuanfeng, Xie Jianwen, Wang Haifu
State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China.
Materials (Basel). 2022 Feb 8;15(3):1268. doi: 10.3390/ma15031268.
To reveal the expansion phenomenon and reaction characteristics of an aluminum particle filled polytetrafluoroethylene (PTFE/Al) reactive jet during the forming process, and to control the penetration and explosion coupling damage ability of the reactive jet, the temperature and density distribution of the reactive jet were investigated by combining numerical simulation and experimental study. Based on the platform of AUTODYN-3D code, the Smoothed Particle Hydrodynamics (SPH) algorithm was used to study the evolution behaviors and distribution regularity of the morphology, density, temperature, and velocity field during the formation process of the reactive composite jet. The reaction characteristic in the forming process was revealed by combining the distribution of the high-temperature zone in numerical simulation and the Differential Scanning Calorimeter/Thermo-Gravimetry (DSC/TG) experiment results. The results show that the distribution of the high-temperature zone of the reactive composite jet is mainly concentrated in the jet tip and the axial direction, and the reactive composite jet tip reacts first. Combining the density distribution in the numerical simulation and the pulsed X-ray experimental results, the forming behavior of the reactive composite jet was analyzed. The results show that the reactive composite jet has an obvious expansion effect, accompanied by a significant decrease in the overall density.
为揭示铝颗粒填充聚四氟乙烯(PTFE/Al)反应射流在形成过程中的膨胀现象和反应特性,并控制反应射流的侵彻与爆炸耦合毁伤能力,采用数值模拟与实验研究相结合的方法,对反应射流的温度和密度分布进行了研究。基于AUTODYN-3D程序平台,运用光滑粒子流体动力学(SPH)算法,研究了反应复合射流形成过程中形态、密度、温度和速度场的演化行为及分布规律。通过结合数值模拟中高温区的分布和差示扫描量热仪/热重分析仪(DSC/TG)实验结果,揭示了形成过程中的反应特性。结果表明,反应复合射流高温区的分布主要集中在射流头部及轴向,反应复合射流头部先发生反应。结合数值模拟中的密度分布和脉冲X射线实验结果,分析了反应复合射流的形成行为。结果表明,反应复合射流具有明显的膨胀效应,同时整体密度显著降低。