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The Synthesis of Ni-Al Surface Alloy by Low-Energy, High-Current Electron Beam Irradiation of Composite Coating

机译:通过低能量,高电流电子束照射合成Ni-Al表面合金的复合涂层

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摘要

The paper presents research results of the synthesis of Ni-Al surface alloy performed in a single vacuum cycle via magnetron sputtering of Ni (0.5 mu m)-Al (1.5 mu m)-Ni (0.5 mu m) composite coating onto a steel substrate and its successive single pulse irradiation with low-energy, high-current electron beam (LEHCEB) of a microsecond duration. The numerical solution of the heat equation is used to determine the optimum LEHCEB modes which provide melting of all the films deposited. It is shown that the single pulse irradiation of thin films leads to the formation of the surface alloy consisting mainly of high-melting-point NiAl intermetallic phase. The structure of the surface alloy is a 2 mu m thick homogeneous coating with 2x4 mu m globules beneath separated by a thin layer of the substrate material. It is found that the wear resistance of the obtained Ni-Al surface layer is 2.7 times higher than that of the untreated steel substrate.
机译:本文介绍了通过Ni(0.5μm)-ni(0.5μm)复合涂层的Ni(0.5μm)-ni(0.5μm)复合涂层的磁控溅射在单个真空循环中进行的Ni-Al表面合金的研究结果在钢基板上 其连续的单脉冲照射,具有微秒持续时间的低能量,高电流电子束(Lehceb)。 热方程的数值溶液用于确定提供沉积所有薄膜的熔化的最佳LehceB模式。 结果表明,薄膜的单脉冲照射导致形成主要是高熔点Nial金属间相的表面合金。 表面合金的结构是2μm厚的均匀涂层,其中由薄层材料分离下面的2×4μm球状。 结果发现所得Ni-Al表面层的耐磨性比未处理的钢基板高2.7倍。

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