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Microcomputed X-Ray Tomographic Imaging and Image Processing for Microstructural Characterization of Explosives

机译:微锁定X射线断层摄影成像和微观结构表征爆炸物的图像处理

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摘要

Microstructural characterization of composite high explosives (HEs) has become increasingly important over the last several decades in association with the development of high fidelity mesoscale modeling and an improved understanding of ignition and detonation processes. HE microstructure influences not only typical material properties (e.g., thermal, mechanical) but also reactive behavior (e.g., shock sensitivity, detonation wave shape). A detailed nondestructive 3D examination of the microstructure has generally been limited to custom-engineered samples or surrogates due to poor contrast between the composite constituents. Highly loaded (>90 wt%) HE composites such as plastic-bonded explosives (PBX) are especially difficult. Here, we present efforts to improve measurement quality by using single and dual-energy microcomputed X-ray tomography and state-of-the-art image processing techniques to study a broad set of HE materials. Some materials, such as PBX 9502, exhibit suitable contrast and resolution for an automatic segmentation of the HE from the polymer binder and the voids. Other composite HEs had varying levels of success in segmentation. Post-processing techniques that used commercially available algorithms to improve the segmentation quality of PBX 9501 as well as zero-density defects such as cracks and voids could be easily segmented for all samples. Aspects of the materials that lend themselves well to this type of measurement are discussed.
机译:综合高爆炸物(HES)的微观结构表征在过去几十年中,与高保真Mescle建模的发展以及对点火和爆炸过程的改进了解,在过去几十年中变得越来越重要。他的微观结构不仅影响典型的材料特性(例如,热,机械),而且影响反应性行为(例如,休克灵敏度,爆炸波形)。由于复合成分之间的对比度差,微观结构的详细无损3D检查通常仅限于定制的样品或替代物。高负荷(> 90wt%)他的复合材料如塑料粘合炸药(PBX)尤其困难。在这里,我们通过使用单能和双能微型X射线断层扫描和最先进的图像处理技术来研究努力提高测量质量,以研究广泛的HE材料。一些材料,例如PBX 9502,具有适当的对比度和分辨率,用于从聚合物粘合剂和空隙中自动分段。其他综合HES在分割中具有不同的成功水平。用于改善PBX 9501的分割质量以及诸如裂缝和空隙的零密度缺陷的后处理技术,可以容易地为所有样品分段。讨论了对这种测量进行很好的材料的方面。

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