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Perspectives on the crystal densities and packing coefficients of explosive compounds

机译:爆炸性化合物的晶体密度和堆积系数透视

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We have investigated possible relationships between four crystal properties: experimental densities and computed intrinsic molecular volumes, packing coefficients and amounts of free space per molecule in the crystal lattices. Our focus was upon C-, H-, N-, O-containing explosive compounds. The objectives were to gain some insight into how densities might be increased, to improve detonation performance, and the amounts of free space per molecule decreased, to counter one of the factors promoting undesired sensitivity to accidental stimuli. The issue of molecular planarity was also examined. The best correlation found between the four properties is perhaps a surprising one: The free space per molecule increases as the molecules are bigger. On the other hand, some relationships that seem to be intuitively reasonable turn out to be quite weak. The principal positive conclusions are that it is desirable for explosive compounds to be composed of molecules that are small and preferably planar.
机译:我们研究了四种晶体特性之间的可能关系:实验密度和计算出的固有分子体积,堆积系数和晶格中每个分子的自由空间量。我们的重点是含C,H,N,O的爆炸性化合物。目的是获得关于如何增加密度,改善爆轰性能以及减少每个分子的自由空间量的一些见识,以应对引起意外刺激的意外敏感性的因素之一。还研究了分子平面性的问题。在这四个特性之间发现的最佳关联可能是一个令人惊讶的关联:每个分子的自由空间随着分子的增大而增加。另一方面,某些似乎直观上合理的关系却非常薄弱。主要的积极结论是,爆炸性化合物最好由小分子组成,最好是平面分子。

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