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Energy characteristics and mechanical properties of cyclotrimethylenetrinitramine (RDX)-based insensitive high-energy propellant

机译:基于亚甲基四氢硝胺(RDX)的能量特性和力学性能 - 基于不敏感的高能推进剂

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In order to improve the energy performance and mechanical properties of insensitive high-energy propellants, cyclotrimethylenetrinitramine (RDX)-based insensitive high-energy propellant with nitrocellulose (NC) and glycidyl azide polymer-energetic thermoplastic elastomer (GAP-ETPE) blends as the binder was prepared by solvent method. The effects of GAP-ETPE/NC ratio and RDX content on the energy properties of propellants were analyzed by numerical calculations. The effects of GAP-ETPE/NC ratio, RDX particle size and RDX content on the mechanical properties of propellants were studied by compression test, impact test and solid surface properties test. The impact sensitivity and friction sensitivity of all the propellant compositions were tested. The theoretical calculation results showed that the introduction of GAP-ETPE into propellant significantly decreased the explosion temperature and increased the specific volume. The density, compression strength, and surface energy of the propellant were gradually decreased with increasing the GAP-ETPE/NC ratio, and the impact strength was increased gradually as well. The mechanical properties and surface energy of the propellant were improved greatly when the RDX particles were smaller. The studied propellants showed a linear increase in the propellant force and explosion temperature with increasing the RDX content. However, increasing the RDX content significantly reduced the impact strength and surface energy. Mechanical reinforcement with solid fillers increased the compression strength and propellant density to a certain degree. Compared with the standard propellants SF-3, the prepared propellant composition is insensitive to the impact and friction.
机译:为了提高不敏感的高能量推进剂的能量性能和力学性能,用硝化纤维素(NC)和缩水甘油酰基聚合物 - 能量热塑性弹性体(GAP-ETPE)混合作为粘合剂的环二甲基四氮硝胺(RDX)基于不敏感的高能量推进剂通过溶剂方法制备。通过数值计算分析了间隙-ETPE / NC比率和RDX含量对推进剂能量性能的影响。通过压缩试验,冲击试验和固体表面特性试验研究了间隙-ETPE / NC比率,RDx粒度和RDX含量对推进剂的力学性能的影响。测试所有推进剂组合物的冲击敏感性和摩擦敏感性。理论计算结果表明,将间隙-ETPE引入推进剂显着降低了爆炸温度并增加了比体积。随着GAP-ETPE / NC比率的增加,推进剂的密度,压缩强度和表面能逐渐降低,并且逐渐增加冲击强度。当RDX颗粒较小时,推进剂的机械性能和表面能量大大提高。研究推进剂在推进剂力和爆炸温度下,随着RDX含量的增加,推进剂的线性增加。然而,增加RDX含量显着降低了冲击强度和表面能。用固体填料的机械加固将压缩强度和推进剂密度增加到一定程度。与标准推进剂SF-3相比,制备的推进剂组合物对冲击和摩擦不敏感。

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