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Microstructure and properties of in-situ chromium carbide composite coating by laser cladding 被引量:9

Microstructure and properties of in-situ chromium carbide composite coating by laser cladding
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摘要 Using Ni/Cr/graphite powder blends as raw powders,a Ni matrix composite coating reinforced by in-situ carbide,was fabricated on the surface of Q235 by means of laser cladding. These microstructure and properties were discussed. The result of phase analysis( XRD) and microstructure investigation( SEM) showed that the coatings consist mainly of Cr_3 C_2,Cr_7 C_3 and γ-( Ni,Cr),which are consistent with the thermodynamic calculations. The wear morphology of the coatings was also examined. The results of dry sliding wear tests of different Cr/C ratio show that the wear resistances of the Cr_3 C_2-reinforced coating,respectively,are 13. 4,9. 5,9. 1 and 6. 5 times higher than that of the substrate and the main wear mechanisms of the coatings are adhesion and abrasive wear with slight oxidation. Using Ni/Cr/graphite powder blends as raw powders,a Ni matrix composite coating reinforced by in-situ carbide,was fabricated on the surface of Q235 by means of laser cladding. These microstructure and properties were discussed. The result of phase analysis( XRD) and microstructure investigation( SEM) showed that the coatings consist mainly of CrC,CrCand γ-( Ni,Cr),which are consistent with the thermodynamic calculations. The wear morphology of the coatings was also examined. The results of dry sliding wear tests of different Cr/C ratio show that the wear resistances of the CrC-reinforced coating,respectively,are 13. 4,9. 5,9. 1 and 6. 5 times higher than that of the substrate and the main wear mechanisms of the coatings are adhesion and abrasive wear with slight oxidation.
作者 He Yanan Song Qiang Sun Kang Zhao Yuqiao Cui Hongzhi 何亚楠;宋强;孙康;赵玉桥;崔洪芝
出处 《China Welding》 EI CAS 2018年第4期10-17,共8页 中国焊接(英文版)
基金 supported by National High Technology Research and Development Program of China(863 Program)(2015AA034404) Scientific Research Foundation of Shandong University of Science and Technology for Recruited Talents(2013RCJJ004) Distinguished Taishan Scholars in Climbing Plan(tspd20161006)
关键词 laser cladding in-situ synthesized chromium carbide wear resistance worn mechanism laser cladding in-situ synthesized chromium carbide wear resistance worn mechanism
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