Research progress of laser cladding self-fluxing alloy coatings on titanium alloys

被引:9
|
作者
刘家奇 [1 ,2 ]
于慧君 [1 ,2 ]
陈传忠 [3 ]
机构
[1] Key Laboratory of High-efficiency and Clean Mechanical Manufacture,School of Mechanical Engineering,Shandong University
[2] Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials,School of Materials Science and engineering,Shandong University
[3] National Demonstration Center for Experimental Mechanical Engineering Education,School of Mechanical Engineering,Shandong University
关键词
Self-fluxing alloy; titanium alloy; laser cladding; coating;
D O I
暂无
中图分类号
TG174.4 [金属表面防护技术];
学科分类号
摘要
Laser cladding is a new surface modification technology,and is widely used for fabricating wear and corrosion resistant composites coatings. Self-fluxing alloys have many advantages,such as excellent properties of deoxidizing and slagging,high wear resistance,low melting point and easy cladding,and are often used in laser cladding to improve wear and corrosion resistance of titanium and its alloys. In this paper,the recent development of Ni-based and Co-based self-fluxing alloy coatings which includes the influence of rare earth and ceramic particles in coatings are summarized. Besides,the effects of processing parameters,such as laser power and scanning speed,on coatings are reviewed. Finally,the trend of development in the future is forecasted.
引用
收藏
页码:45 / 51
页数:7
相关论文
共 50 条
  • [31] Microstructure and wear behaviour of self-fluxing alloy coatings reinforced by WC-Co
    Conciatu, I. L.
    Ciubotariu, C. R.
    Secosan, E. R.
    Frunzaverde, D.
    Campian, C. V.
    8TH INTERNATIONAL CONFERENCE ON ADVANCED CONCEPTS IN MECHANICAL ENGINEERING, 2018, 444
  • [32] INTERACTION OF SELF-FLUXING NICKEL-ALLOYS WITH OXYGEN
    GERSHENZON, SM
    WELDING PRODUCTION, 1978, 25 (01): : 12 - 14
  • [33] Optimization analysis of Nd: YAG laser self-fluxing welding of Titanium alloy/stainless steel dissimilar metal by RSM
    Zhang, Y. F.
    Zhang, H.
    Zhang, H. T.
    Zhu, Z. Q.
    Pan, J. L.
    JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 2019, 21 (3-4): : 251 - 264
  • [34] Research Progress on Laser Cladding of Refractory High-Entropy Alloy Coatings
    Xia, Xingchuan
    Zhang, Enkuan
    Ding, Jian
    Wang, Yujiang
    Liu, Yongchang
    ACTA METALLURGICA SINICA, 2025, 61 (01)
  • [35] ALLOYING AND POST-HEAT-TREATMENT OF THERMAL-SPRAYED COATINGS OF SELF-FLUXING ALLOYS
    SHIEH, YH
    WANG, JT
    SHIH, HC
    WU, ST
    SURFACE & COATINGS TECHNOLOGY, 1993, 58 (01): : 73 - 77
  • [36] Measurement Methods of Mechanical Properties and Toughness for Self-Fluxing Alloy Coatings in High Temperature Environments
    Isomoto, Yoshinori
    Kawanishi, Toru
    Kawahara, Yuuzou
    JOURNAL OF THE JAPAN INSTITUTE OF METALS AND MATERIALS, 2013, 77 (06) : 225 - 230
  • [37] Laser Cladding of Composite Bioceramic Coatings on Titanium Alloy
    Xiang Xu
    Jiege Han
    Chunming Wang
    Anguo Huang
    Journal of Materials Engineering and Performance, 2016, 25 : 656 - 667
  • [38] Laser Cladding of Composite Bioceramic Coatings on Titanium Alloy
    Xu, Xiang
    Han, Jiege
    Wang, Chunming
    Huang, Anguo
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2016, 25 (02) : 656 - 667
  • [39] STRUCTURE FORMATION IN SELF-FLUXING NICKEL-BASE COATINGS
    POSTNIKOV, VS
    CHAUSOVA, LV
    METAL SCIENCE AND HEAT TREATMENT, 1991, 33 (3-4) : 174 - 178
  • [40] Structure formation of self-fluxing nickel-base coatings
    Postnikov, V.S.
    Chausova, L.V.
    Metallovedenie i Termicheskaya Obrabotka Metallov, 1991, (03): : 5 - 7