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Synthesis of Titanium Carbide Particle in Laser Melted-pool in situ 被引量:1

Synthesis of Titanium Carbide Particle in Laser Melted-pool in situ
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摘要 The titanium carbide phase was synthesized in laser melted-pool in situ as the reinforced particles of nickel based composite coating on Ti-6Al-4V alloy surface using the nickel and graphite blending powder by laser cladding. The microstructure investigation showed that the petals-shaped particles and granular particles were two main morphology of titanium carbide particles. And a few spiral-shaped titanium carbide pattern and eutectic titanium carbide appeared on the cross-sections of the coating. The spiral-shaped titanium carbide pattern composed of some slender arc-shape titanium carbide particles and the eutectic titanium carbide was fine. The morphology and distribution of the spiral-shaped titanium carbide patterns and eutectic titanium carbide confirmed that their growth mechanism was the dissolution-precipitation mechanism and was affected by the convection behavior of the laser melted pool. The spiral-shaped titanium carbide pattern would precipitate out the high-temperature melts under high-speed convection. The eutectic titanium carbide would precipitate out when the melts stopped convection or dropped to eutectic temperature. The titanium carbide phase was synthesized in laser melted-pool in situ as the reinforced particles of nickel based composite coating on Ti-6 Al-4 V alloy surface using the nickel and graphite blending powder by laser cladding. The microstructure investigation showed that the petals-shaped particles and granular particles were two main morphology of titanium carbide particles. And a few spiral-shaped titanium carbide pattern and eutectic titanium carbide appeared on the cross-sections of the coating. The spiral-shaped titanium carbide pattern composed of some slender arc-shape titanium carbide particles and the eutectic titanium carbide was fine. The morphology and distribution of the spiral-shaped titanium carbide patterns and eutectic titanium carbide confirmed that their growth mechanism was the dissolution-precipitation mechanism and was affected by the convection behavior of the laser melted pool. The spiral-shaped titanium carbide pattern would precipitate out the high-temperature melts under high-speed convection. The eutectic titanium carbide would precipitate out when the melts stopped convection or dropped to eutectic temperature.
作者 ZHOU Lei LIU Yanhui DONG Shuaijun ZHU Lingjie LI Yongjiu 周磊;刘延辉;DONG Shuaijun;ZHU Lingjie;LI Yongjiu(School of Materials Engineering, Shanghai University of Engineering Science)
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第6期1315-1320,共6页 武汉理工大学学报(材料科学英文版)
基金 Funded by the Shanghai Science and Technology Committee Innovation(17JC1400600 and 17JC1400601) the National Natural Science Foundation of China(51471105) the Graduate Students’Innovative Research Projects of Shanghai University of Engineering Science(17KY0513) the College Student Innovation Training Projects of Shanghai University of Engineering Scienc(CX1805007)
关键词 titanium carbide composite coating laser cladding microstructure titanium alloy titanium carbide composite coating laser cladding microstructure titanium alloy
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