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Dissolution of a new explosive formulation containing TNT and HMX : Comparison with octol

机译:溶解含有TNT和HMX的新型炸药配方:与辛醇的比较

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摘要

GIM (Greener Insensitive Material) is a new explosive formulation made of HMX(51.5%), TNT (40.7%), and a binder, ETPE (7.8%), which is currently investigated by the Canadian Department of National Defense for a wider use by the Army. In the present study, dissolution of GIM in water was measured and compared to the dissolution of octol (HMX/TNT: 70/30). Although the presence of ETPE did not prevent completely TNT and HMX from dissolving, GIM appeared to dissolve more slowly than octol. The ETPE was shown to prevent the formulation particles from collapsing and to retard the dissolution of both TNT and HMX by limiting their exposure to water. In both octol and GIM, the dissolution rate of the particles was governed by the compound(s) that are slower to dissolve, i.e. HMX in octol, and HMX and ETPE in GIM. A model based on Ficku2019s diffusion law allowed fitting well the dissolution data of octol but was less appropriate to fit the data of GIM likely due to a physical rearrangement of the solid upon dissolution. The present findings demonstrate that ETPE in GIM decreases the risks of explosives leakage from particles of the new formulation and should facilitate the collecting of non-exploded GIM particles in training sites.
机译:GIM(较不敏感的绿色材料)是由HMX(51.5%),TNT(40.7%)和粘合剂ETPE(7.8%)制成的新型炸药配方,目前由加拿大国防部进行了广泛研究由陆军。在本研究中,测量了GIM在水中的溶解度,并与辛醇(HMX / TNT:70/30)的溶解度进行了比较。尽管ETPE的存在不能完全阻止TNT和HMX溶解,但GIM的溶解似乎比辛醇慢。已显示出ETPE可以防止制剂颗粒塌陷,并通过限制它们与水的接触来延迟TNT和HMX的溶解。在辛醇和GIM中,颗粒的溶解速率均由溶解较慢的化合物(即辛醇中的HMX和GIM中的HMX和ETPE)控制。基于Fick扩散定律的模型可以很好地拟合辛醇的溶出度数据,但不太适合拟合GIM的数据,这可能是由于固体在溶出时会发生物理重排。本研究结果表明,GIM中的ETPE降低了炸药从新配方颗粒泄漏的风险,并应有助于在训练场所收集未爆炸的GIM颗粒。

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