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Non-equilibrium solidification by laser surface alloying of molybdenum with nickel: Structure and properties of alloyed layers

机译:钼与镍的激光表面合金化引起的非平衡凝固:合金层的结构和性能

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摘要

Surface alloying was carried out on molybdenum using continuous wave Nd : YAG and CO2 lasers. The alloying element (nickel) was deposited on the molybdenum surface by plasma spraying. Microstructure evolution and phase identification was investigated by means of optical and scanning microscopy and X-ray microanalysis. Layers with an average content of about 33% at. of nickel were obtained. Rapid solidification with fine scale microstructures and non-equilibrium nickel rich phases was reported. Molybdenum oxides with a suggested composition of the MoO2 were also identified. In addition the results of investigations of the alloyed layer microhardness and the layer resistance to erosion in an electric arc have been presented.
机译:使用连续波Nd:YAG和CO2 激光在钼上进行表面合金化。通过等离子喷涂将合金元素(镍)沉积在钼表面上。通过光学和扫描显微镜以及X射线显微分析研究了显微组织的演变和相识别。平均含量约为33%at的层。获得镍。据报道,具有精细的微观结构和不平衡的富镍相的快速凝固。还鉴定出具有建议的MoO2 组成的氧化钼。另外,还给出了合金层显微硬度和层耐电弧腐蚀性能的研究结果。

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  • 来源
    《Journal of Materials Science》 |2001年第13期|3261-3271|共11页
  • 作者单位

    Division of Materials Science and Electrotechnology Technical University of Lodz B;

    Institute of Materials Engineering Technical University of Lodz B;

    Fraunhofer Institute for Laser Technology;

    Fraunhofer Institute for Laser Technology;

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