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FORMATION OF METALLIC GLASS COATINGS VIA LASER DEPOSITION

机译:通过激光沉积形成金属玻璃涂层

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Metallic glasses have attracted tremendous attention as structural materials because of their remarkable mechanical and corrosion properties. Laser deposition is a useful technique to create and produce coatings with amorphous or uniquely tailored, non-equilibrium microstructures. In this study, we use the Laser Engineered Net Shaping (LENS) process to deposit pre-alloyed Zr-based and Cu-based metallic glass forming powder on the Zr-based glassy substrates. In both cases, amorphous melt zones are observed surrounded by crystalline heat-affected zones (HAZs). The microstructures of the deposited materials and underlying substrates were analyzed and characterized as functions of the laser processing parameters. To better understand the thermal environment for the formation of metallic glass coatings via laser deposition, a three-dimensional finite element model was performed and compared with the in-situ thermal imaging measurements. It is indicated that optimization of the laser energy input can result in the formation of a continuous amorphous layer with the elimination of underlying crystalline HAZs.
机译:由于其显着的机械和腐蚀性,金属眼镜由于结构材料而引起了巨大的关注。激光沉积是一种有用的技术,用于制造和生产具有无定形或唯一定制的非平衡微观结构的涂层。在这项研究中,我们使用激光工程净整形(镜片)过程在Zr基玻璃基板上沉积预合金化的Zr基和Cu基金属玻璃形成粉末。在这两种情况下,观察到无定形熔体区被结晶热影响的区域(HAZS)包围。分析沉积材料和底层基材的微观结构,并表征为激光加工参数的功能。为了更好地了解通过激光沉积形成金属玻璃涂层的热环境,进行三维有限元模型并与原位热成像测量进行比较。结果表明激光能量输入的优化可以导致形成连续的无定形层,消除底层结晶危机。

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