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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Materials science and technology aspects of energetic (explosive) materials
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Materials science and technology aspects of energetic (explosive) materials

机译:高能(爆炸)材料的材料科学和技术方面

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摘要

Crystallographic, phase diagram, X-ray diffraction and mechanical property aspects of energetic materials are described in relation, first, to the properties of individual crystals as employed in composite explosive material formulations and then, second, to initiation of chemical decomposition by imposed mechanical forces and deformations. The mechanically induced decomposition properties are tied to the special character of dislocations in the molecularly bonded energetic crystal structures formed by individual covalently bonded molecules. Microindentation fracture mechanics, hardness stress-strain and drop weight impact measurements on energetic crystals are assessed. Of particular interest are the material granular compaction properties associated with a mechanically induced deflagration to detonation transition (DDT) behaviour. Shock induced initiations of detonation involve experimental and theoretical model considerations at nanometric dimensions. The total results point to improved mechanical insensitivities and higher energy release rates at smaller particle dimensions.
机译:高能材料的晶体学,相图,X射线衍射和机械性能方面,首先是与复合炸药配方中所用的单个晶体的性能有关,其次是通过施加的机械力引发化学分解和变形。机械诱导的分解特性与由单个共价键合分子形成的分子键合高能晶体结构中位错的特殊性有关。评估了微压痕断裂力学,硬度应力-应变和液滴重量对高能晶体的影响。特别引起关注的是与机械诱导的爆燃-爆轰过渡(DDT)行为相关的材料颗粒压缩性能。冲击引起的爆炸起爆涉及纳米尺寸的实验和理论模型考虑。总的结果表明在较小的颗粒尺寸下改善了机械不敏感性和较高的能量释放速率。

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