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首页> 外文期刊>Metallurgical and Materials Transactions A >Correlation of Microstructure and Ballistic Performance of Multilayered Zr-based Amorphous Surface Composites Fabricated by High-Energy Electron-Beam Irradiation
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Correlation of Microstructure and Ballistic Performance of Multilayered Zr-based Amorphous Surface Composites Fabricated by High-Energy Electron-Beam Irradiation

机译:高能电子束辐照制备的多层Zr基非晶态表面复合材料的微观结构与弹道性能的相关性

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In this study, multilayered, Zr-based amorphous surface composites were fabricated by high-energy electron-beam irradiation; the correlation of their microstructure, hardness, compressive properties, and fracture properties with ballistic performance was investigated. The mixture of Zr-based amorphous powders and LiF + MgF2 flux powders was deposited on a pure Ti substrate or a plain carbon steel substrate, and then an electron beam was irradiated on this powder mixture to fabricate a one-layered surface composite. The multilayered surface composite was fabricated by an irradiating electron beam several times again onto the powder mixture deposited on the one-layered surface composite. The microstructural analysis results indicated that a small amount of fine crystalline particles was distributed homogeneously in the surface composite layer. Because the surface composite layers absorbed the ballistic impact energy by forming many cracks or microcracks, the surface composite plates were not perforated during the ballistic impact test. On the one hand, in the surface composite without containing ductile β phases, the composite layer was cracked completely and fallen off from the substrate. On the other hand, a small amount of fragmentation was found in the impacted area of the composite containing β phases because it had the sufficient hardness and fracture toughness simultaneously for effectively blocking the traveling of a projectile, thereby improving ballistic performance.
机译:在这项研究中,通过高能电子束辐照制备了多层的Zr基非晶表面复合材料。研究了它们的微观结构,硬度,压缩性能和断裂性能与弹道性能之间的关系。将Zr基无定形粉末和LiF + MgF 2 助熔剂粉末的混合物沉积在纯Ti基底或碳素钢基底上,然后在该粉末混合物上照射电子束以制备一层表面复合材料。多层表面复合材料是通过再次多次将电子束照射到沉积在一层表面复合材料上的粉末混合物上而制成的。显微组织分析结果表明,少量的细小结晶颗粒均匀地分布在表面复合层中。由于表面复合材料层通过形成许多裂纹或微裂纹来吸收弹道冲击能量,因此在弹道冲击试验期间未对表面复合板打孔。一方面,在不含延性β相的表面复合材料中,复合材料层完全破裂并从基材上脱落。另一方面,在含有β相的复合材料的冲击区域中发现少量的碎裂,因为它同时具有足够的硬度和断裂韧性以有效地阻止弹丸的行进,从而改善了弹道性能。

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