Hu Zunjian, Peng Wei, Li Gang, Yu Qian, Yang Fang, Suo Zhirong, Xu Ruijuan, Zhao Chuande
Institute of Chemical Materials, China Academy of Engineering Physics (CAEP) Mianyang Sichuan 621900 China
School of Materials Science and Engineering, Southwest University of Science and Technology Mianyang 621010 China
RSC Adv. 2023 Jun 9;13(25):17398-17405. doi: 10.1039/d3ra01360j. eCollection 2023 Jun 5.
The practical application of paraffin wax (PW) in cyclotetramethylenetetranitramine (HMX)-based polymer-bonded explosive (PBX) requires an understanding of its effect on the thermal decomposition of HMX. In this work, by comparing the thermal decomposition of HMX and a HMX/PW mixture, combined with crystal morphology analysis, molecular dynamics simulation, kinetic analysis, and gas product analysis, the unusual phenomenon and mechanism of the PW effect on the thermal decomposition of HMX were evaluated. During the initial decomposition, PW infiltrates the crystal surface of HMX, reduces the energy barrier for chemical bond dissociation, and induces the decomposition of molecules on HMX crystals, resulting in a lower initial decomposition temperature. PW consumes the active gas produced by HMX with further thermal decomposition and inhibits the dramatic increase of the HMX thermal decomposition rate. In decomposition kinetics, this effect is manifested as PW inhibits transition from an -order reaction to an autocatalytic reaction.
石蜡(PW)在基于环四亚甲基四硝胺(HMX)的聚合物粘结炸药(PBX)中的实际应用需要了解其对HMX热分解的影响。在这项工作中,通过比较HMX和HMX/PW混合物的热分解,结合晶体形态分析、分子动力学模拟、动力学分析和气体产物分析,评估了PW对HMX热分解影响的异常现象和机理。在初始分解过程中,PW渗透到HMX的晶体表面,降低了化学键解离的能垒,并诱导HMX晶体上分子的分解,导致较低的初始分解温度。随着进一步热分解,PW消耗了HMX产生的活性气体,并抑制了HMX热分解速率的急剧增加。在分解动力学中,这种影响表现为PW抑制了从一级反应向自催化反应的转变。