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Characterization of Crater Area in a Target Penetrated by a Wf/Zr-Based Amorphous Matrix Composite Projectile

机译:由WF / ZR基非晶基质复合射弹穿透靶中的火山口区域的特征

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摘要

Tungsten fiber-reinforced Zr41.25Ti13.75Cu12.5Ni10Be22.5 amorphous matrix composites (hereinafter referred to as Wf/Zr-based amorphous matrix composites) are considered as a potential new generation of projectile material, while the penetration behavior of Wf/Zr-based amorphous matrix composites is not fully clear yet. In order to better understand the penetration behavior of this composite material and study its armor-piercing performance, a ballistic experiment was performed and the hardness and microstructure around the crater of a target material were studied. A ballistic experiment was performed with a projectile of Wf/Zr-based amorphous matrix composite and a target of 4043 steel. After the ballistic experiment, the target was cut through the crater using a wire cutting machine into a sample with size 150 mm × 40 mm × 20 mm, which was later polished by different types of sandpaper. The micro-hardness was analyzed in a micro-hardness tester, and the microstructure was observed by SEM. According to this study, three layers were identified in the direction lateral to the crater, consisting of a martensite layer, a deformation strengthening layer, and the original structure layer. Moreover, the martensite layer initially thickened and then thinned in the direction longitudinal to the crater.
机译:钨纤维增强Zr41.25ti13.75cu12.5ni10be22.5非晶基质复合材料(以下称为Wf / Zr基非晶基质复合材料)被认为是射弹材料的潜在新一代,而WF / Zr的渗透行为基于非晶矩阵复合材料尚未完全清晰。为了更好地了解这种复合材料的穿透行为并研究其盔甲性能,进行了弹道实验,研究了靶材料陨石坑周围的硬度和微观结构。用WF / ZR基非晶基质复合材料的射弹和4043钢的靶进行弹道实验。在弹道实验之后,将靶通过火山口切割成尺寸150mm×40mm×20mm的样品,后来被不同类型的砂纸抛光。在微硬度测试仪中分析微硬度,通过SEM观察微观结构。根据该研究,在横向侧向喷射口的方向上鉴定了三层,由马氏体层,变形强化层和原始结构层组成。此外,马氏体层最初加厚,然后在纵向到火山口的方向上变薄。

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