首页> 外文会议>Eleventh International Detonation Symposium Snowmass, Colorado August 31-September 4, 1998 >The evolution of microstructural changes in pressed HMX explosives
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The evolution of microstructural changes in pressed HMX explosives

机译:压制HMX炸药的微观结构变化演变

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Recently developed techniques for investigating the microstructure of plastic-bonded explosives have been applied to HMX explosives pressed to various levels of porosity. Microstructural changes in PBX 9501 are followed from the early stages of prill consolidation through typical density to very low porosity (0.6percent). As porosity is reduced, the following sequence is observed. Large inter-and intra-prill voids are eliminated with first damage to HMX crystals occurring at prill boundaries. This is followed by increased incidence of crystal twinning and cracking. At the lowest porosities, spall pullout artifacts are observed, cracks associated with particle contact points are more obvious, and the results of intercrystalline indentation or intergrowth migration processes are apparent. A comparison is made, at lowest porosities achieved, with PBX 9404 and X-0242 (a formulation like PBX 9501 with higher binder volume). Possible implications for porosity trends in shock sensitivity data are discussed.
机译:用于研究塑料粘结炸药的微观结构的最新开发技术已应用于压制成各种孔隙度的HMX炸药。 PBX 9501的微观结构变化是从颗粒固结的早期阶段到典型的密度直至非常低的孔隙度(0.6%)之后进行的。随着孔隙率降低,观察到以下顺序。消除了内部和内部的小颗粒空隙,因为首先损坏了小颗粒边界处的HMX晶体。其次是晶体孪晶和破裂的发生率增加。在最低的孔隙率下,观察到剥落的伪影,与颗粒接触点相关的裂纹更加明显,并且晶间压痕或共生迁移过程的结果也很明显。使用PBX 9404和X-0242(一种具有较高粘合剂体积的PBX 9501之类的配方),以达到的最低孔隙度进行了比较。讨论了冲击敏感性数据中孔隙率趋势的可能含义。

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