Microstructure and Wear-Resistant Properties of Ni80Al20-MoS2Composite Coating on Sled Track Slippers

被引:4
|
作者
Wang, Weihua [1 ,2 ]
Xie, Faqin [1 ]
Wu, Xiangqing [1 ]
Zhu, Zheng [2 ]
Wang, Shaoqing [1 ]
Lv, Tao [1 ]
机构
[1] Northwestern Polytech Univ, Sch Aeronaut, Xian 710072, Peoples R China
[2] China Aerosp Life Support Ind Ltd, Xiangyang 441003, Peoples R China
关键词
sled track slipper; atmospheric spray; Ni80Al20; MoS2; wear-resistant property; BEHAVIOR; AL2O3; MOS2; AL;
D O I
10.3390/coatings10070651
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In order to increase the surface hardness and wear-resistance property of sled track slippers, a Ni80Al20-MoS(2)composite coating was fabricated on the surface of a stainless steel 0Cr18Ni9Ti sled track slipper via atmospheric spray and hot dipping. The microstructure, composition and surface hardness of coatings under different spraying powers were characterized and measured. The wear-resistant properties of the slipper substrate and the coating were also checked. The results showed that the higher the spraying power was, the greater the smoothness, density and hardness was of the Ni80Al20 coating, while the thickness initially increased and then decreased. When the spraying power was 18 kW, the thickness was 342.5 mu m, the surface hardness was 304.1 Hv(0.2), and the coating was composed of Ni, Al, Ni3Al, NiAl and a little Al2O3. The friction coefficient of the slipper substrate against GCr15 balls at room temperature in air was 0.7, while the coated substrate with MoS(2)lubrication film was 0.3 and the volume wear rate declined by 1/5. The friction coefficient of the Ni80Al20 coating was 0.5 and the Ni80Al20-MoS(2)composite coating was 0.15, while the volume wear rate declined by 1/4 and 1/3.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Investigation on Microstructure and Properties of Low-Carbon Wear-Resistant Steels with Addition of Cr and Ni
    Yao, Zishan
    Tian, Junyu
    Chen, Xin
    Wei, Zhirui
    Wang, Jun
    Xu, Guang
    STEEL RESEARCH INTERNATIONAL, 2020, 91 (07)
  • [22] Microstructure of laser clad TiC/NiAl-Ni3(Al,Ti,C) wear-resistant intermetallic matrix composite coatings
    Chen, Y
    Wang, HM
    MATERIALS LETTERS, 2003, 57 (13-14) : 2029 - 2036
  • [23] Friction and Wear Characteristics of Electrodeposited Ni-Mos2/Al2O3 Composite Coating
    Huang, Zhongjia
    Xiong, Dangsheng
    Li, Jianliang
    Liu, Minglang
    MANUFACTURING PROCESS TECHNOLOGY, PTS 1-5, 2011, 189-193 : 173 - +
  • [24] Effect of Al Content on Microstructure and Properties of Equal Value Zinc Equivalent Wear-resistant Brass
    Wang X.
    Zhou B.
    Dai J.
    Xu J.
    Cailiao Daobao/Materials Reports, 2021, 35 (20): : 20124 - 20128
  • [25] WEAR-RESISTANT DETONATION-DEPOSITED COATINGS OF AN ALLOYED 80% Ni-20% Cr MATERIAL.
    Gorbik, V.P.
    Ivashchenko, R.K.
    Kadyrov, V.Kh.
    Kotlyarenko, L.A.
    Fedorenko, V.K.
    Khairutdinov, A.M.
    Soviet powder metallurgy and metal ceramics, 1985, 24 (02): : 135 - 141
  • [26] Structure and Properties of Ti–C–Ni–Al Wear-Resistant Coatings Obtained by HIPIMS Method
    M. A. Zasypkin
    A. D. Sytchenko
    Ph. V. Kiryukhantsev-Korneev
    Protection of Metals and Physical Chemistry of Surfaces, 2023, 59 : 76 - 84
  • [27] Wear-Resistant Properties of TiC/Fe Ceramic Composite Coating on Steel Plate via Combustion Synthesis
    Zhao, Hong
    Yang, Shiwei
    Qiao, Yingjie
    Zhang, Xinghong
    CHINESE CERAMICS COMMUNICATIONS, 2010, 105-106 : 435 - +
  • [28] Microstructure and Properties of Laser Cladding Ni-based High-temperature Wear-resistant Alloy
    Sheng, Li
    Yuantao, Lei
    Wenxing, Wu
    Longzhang, Shen
    Yong, Chen
    Hongmei, Zhu
    Changjun, Qiu
    CHINA SURFACE ENGINEERING, 2023, 36 (05) : 213 - 221
  • [29] Characterization and Wear Behaviors of Electrodeposited Ni-MoS2/SiC Composite Coating
    Yan, Yutao
    Lu, Lifeng
    Huo, Yuqiu
    Zhao, Yong
    COATINGS, 2022, 12 (08)