Sanghavi R R, Kamale P J, Shaikh M A R, Shelar S D, Kumar K Sunil, Singh Amarjit
High Energy Materials Research Laboratory, Pune 411021, India.
J Hazard Mater. 2007 May 8;143(1-2):532-4. doi: 10.1016/j.jhazmat.2006.09.087. Epub 2006 Oct 7.
Efforts to develop gun propellants with low vulnerability have recently been focused on enhancing the energy with a further improvement in its sensitivity characteristics. These propellants not only prevent catastrophic disasters due to unplanned initiation of currently used gun propellants (based on nitrate esters) but also realize enhanced energy levels to increase the muzzle velocity of the projectiles. Now, in order to replace nitroglycerine, which is highly sensitive to friction and impact, nitramines meet the requirements as they offer superior energy due to positive heat of formation, typical stoichiometry with higher decomposition temperatures and also owing to negative oxygen balance are less sensitive than stoichiometrically balanced NG. RDX has been widely reported for use in LOVA propellant. In this paper we have made an effort to present the work on scantily reported nitramine HMX based LOVA gun propellant while incorporating energetic plasticizer glycidyl azide polymer to enhance the energy level. HMX is known to be thermally stable at higher temperature than RDX and also proved to be less vulnerable to small scale shaped charge jet attack as its decomposition temperature is 270 degrees C. HMX also offers improved impulse due to its superior heat of formation (+17 kcal/mol) as compared to RDX (+14 kcal/mol). It has also been reported that a break point will not appear until 35,000 psi for propellant comprising of 5 microm HMX. Since no work has been reported in open literature regarding replacement of RDX by HMX, the present studies were carried out.
近期,研发低易损性火炮推进剂的工作重点在于在进一步改善其感度特性的同时提高能量。这些推进剂不仅能防止因当前使用的火炮推进剂(基于硝酸酯)意外起爆而引发的灾难性事故,还能实现能量水平的提升,以提高弹丸的初速。如今,为了取代对摩擦和撞击高度敏感的硝化甘油,硝胺因其生成热为正、具有典型的化学计量比且分解温度较高,以及氧平衡为负而比化学计量平衡的硝化甘油更不敏感,从而满足了相关要求。黑索今(RDX)已被广泛报道用于低易损性推进剂。在本文中,我们致力于介绍关于报道较少的基于奥克托今(HMX)的低易损性火炮推进剂的研究工作,同时加入含能增塑剂缩水甘油叠氮聚合物以提高能量水平。众所周知,HMX在比RDX更高的温度下热稳定性良好,并且由于其分解温度为270℃,已证明其对小规模聚能射流攻击的易损性较低。与RDX(+14千卡/摩尔)相比,HMX因其优越的生成热(+17千卡/摩尔)还能提供更高的冲量。另据报道,由5微米HMX组成的推进剂在35000磅力/平方英寸之前不会出现拐点。由于公开文献中尚未报道用HMX替代RDX的相关工作,因此开展了本研究。