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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Solid-state flow, mechanical alloying, and melt-related phenomena for [001] single-crystal W ballistic rod penetrators interacting with steel targets
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Solid-state flow, mechanical alloying, and melt-related phenomena for [001] single-crystal W ballistic rod penetrators interacting with steel targets

机译:[001]单晶W弹道穿透器与钢靶相互作用的固态流动,机械合金化和与熔体有关的现象

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Single-crystal [001] clad with Inconel 718 and unclad W penetrators in steel targets have been examined by optical metallography and electron microscopy to provide a comprehensive microstructural overview of the penetration process, including solid-state penetrator flow and erosion, target flow, and solid-state mixing of the target and penetrator. Selective etching techniques as well as energy-dispersive X-ray mapping, revealed unambiguous evidence of target (steel) and penetrator mechanical mixing. These mixtures, which included some isolated melt regimes, differ in composition for clad and unclad samples, and were observed to intercalate within the material being eroded by DRX-assisted flow. The cladding material appears to influence the solid-state flow by functioning as the principal flow interaction regime between the target and penetrator. This suggests that by selecting some optimum cladding material, which might function as a solid-state lubricant at the interface regime, the penetration performance of the rod could improve.
机译:已经通过光学金相学和电子显微镜检查了钢靶中包覆有Inconel 718和未包覆W穿透剂的单晶[001],以提供穿透过程的全面微观结构概述,包括固态穿透剂的流动和侵蚀,靶的流动以及靶和穿透剂的固态混合。选择性蚀刻技术以及能量色散X射线图显示了目标(钢)和穿透器机械混合的明确证据。这些混合物包括一些隔离的熔体方案,包层和非包层样品的成分不同,并且被观察到嵌入在受DRX辅助流动侵蚀的材料中。包层材料似乎通过充当靶与穿透器之间的主要流相互作用机制来影响固态流。这表明,通过选择一些最佳的包层材料,它们可以在界面状态下起固态润滑剂的作用,可以提高棒的穿透性能。

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