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Research on the volume and line fractal dimension of fragments from the dynamic explosion fragmentation of metal shells

机译:金属壳动态爆炸碎片碎片体积和线分形尺寸的研究

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The shape features and size distribution of fragments produced by metal shells under explosion loading have great significance for studies on weapons, industrial structures, and aircraft technology. However, it is unclear how best to describe the morphological characteristics and mass distribution of fragments, or whether a similar quantitative relationship exists between each fragment. Therefore, this paper reports the fragment characteristics and internal features of the fragmentation of metal shells under instantaneous explosion loading. An experiment was designed to measure the fragmentation and perforation of a steel cylinder shell filled with high explosives. Using fractal mathematical models, expressions for the volume and line fractal dimensions of the fragments are obtained. The volume fractal dimension, which is used to describe the mass or size distribution of the fragments, and the line fractal dimension, which is used to describe the projected contour of fragments or fragment perforations, were measured using a MATLAB mathematical model. The results reveal that the characteristic mass distribution and morphology of the fragments are statistically self-similar and can be characterized by the fractal dimension. The Gauss-Newton iterative method for the Rosin-Rammler distribution is superior to the existing fitting method, and the resulting volume and line fractal dimensions satisfy the relationship D-3 + 2D(1) = 5. (C) 2018 Published by Elsevier B.V.
机译:爆炸负荷下金属壳生产的片段的形状特征和尺寸分布对武器,工业结构和飞机技术的研究具有重要意义。然而,目前尚不清楚如何最好地描述片段的形态特征和质量分布,或者在每个片段之间是否存在类似的定量关系。因此,本文在瞬时爆炸载荷下报道了金属壳碎片的片段特征和内部特征。设计实验,以测量填充有高炸药的钢缸壳的碎片和穿孔。使用分形数学模型,获得了片段的体积和线分形尺寸的表达。使用MATLAB数学模型测量用于描述片段的质量或尺寸分布的体分形尺寸和用于描述片段或片段穿孔的突出的轮廓的线分形尺寸。结果表明,片段的特征质量分布和形态是统计学上的自相似的,并且可以通过分形尺寸表征。松香 - 垃圾箱分布的高斯 - 牛顿迭代方法优于现有的拟合方法,由elsevier b.v发布的关系D-3 + 2d(1)= 5.(c)2018年

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