首页> 外文期刊>Combustion, Explosion, and Shock Waves >Heat of Explosion of Commercial and Brisant High Explosives
【24h】

Heat of Explosion of Commercial and Brisant High Explosives

机译:商业炸药和爆炸性炸药的爆炸热

获取原文
获取原文并翻译 | 示例
           

摘要

Methods for determining the heat of explosion of high explosives(HEs)with ideal and nonideal processes of explosive decomposition are considered.It is shown that the heat of explosion is of significance for estimating the efficiency of commercial HEs and is used in the energetic characterization of the working capacity.The heat of explosion of brisant HEs is only part of the blast heat of explosion and is the heat content of gaseous detonation products during their isentropic expansion from the initial state to a certain expansion ratio(determined by experimental conditions).The heat of explosion can be obtained by thermodynamic calculations based on physically justified equations of state for fluids(gaseous detonation products in the chemical-reaction zone of the detonation wave in the supercritical state)and condensed nanocarbon phases(nanographite,nanodiamond,and liquid carbon).Experimental and calculated values of the heat of explosion are given.The thermodynamic calculation is inapplicable to commercial HEs because of the nonideal nature of their detonation.The heat of explosion of commercial HEs can be calculated using the Hess law.The heat of explosion of brisant HEs is not a measure of power.The power of HEs is characterized by the propellant performance.It is shown that even detonation velocity cannot be a measure of the power of HEs.The power and detonation parameters of brisant HEs are determined by the energy release density in unit volume of the chemical-reaction zone of the detonation wave and by the rate of energy release from the shock front rather than by the heat of explosion,which cannot be considered a universal characteristic.
机译:考虑了理想的和非理想的爆炸分解过程来确定高爆炸物爆炸热的方法。研究表明,爆炸热对于估计商业高爆炸物的效率具有重要意义,可用于高能炸药的能量表征。炽热HEs的爆炸热只是爆炸爆炸热的一部分,是气态爆炸产物从初始状态到一定膨胀率(由实验条件确定)等熵膨胀过程中的热含量。可以通过基于物理合理状态方程的热力学计算来获得爆炸热,该状态方程是流体(超临界状态下的爆轰波的化学反应区中的气态爆轰产物)和冷凝的纳米碳相(纳米石墨,纳米金刚石和液态碳)给出了爆炸热的实验值和计算值。热力学计算为由于其爆炸的非理想特性,因此适用于商用HE。商业HE的爆炸热可以使用赫斯定律计算。新的HE的爆炸热不是功率的量度.HE的功率的特征在于研究表明,均匀的爆轰速度也不能衡量HE的功率。新的HE的功率和爆轰参数取决于爆炸波化学反应区域单位体积中的能量释放密度和从冲击前沿释放的能量的速率,而不是由爆炸热释放的速率,这不能被认为是普遍特征。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号