Sliding Wear of Copper-Impregnated Carbo-Graphite Under Different Conditions

被引:1
作者
Mahto, Nitish Kumar [1 ]
Tyagi, Rajnesh [1 ]
Mishra, Shashank [2 ]
机构
[1] Indian Inst Technol BHU, Dept Mech Engn, Varanasi 221005, India
[2] DRDO, DMSRDE, DCSS, Directorate Councils & Special Serv, Kanpur 208013, India
基金
英国科研创新办公室;
关键词
carbo-graphite; friction; impregnation; seals; solid lubrication; wear; SEAL FACE MATERIALS; DRY LINE CONTACT; TRIBOLOGICAL BEHAVIOR; FRICTION; WATER;
D O I
10.1007/s11665-024-09975-6
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Keeping in view the importance of carbo-graphite materials in sealing applications in aircraft engines, the tribological performance of carbo-graphite (CG) and copper-impregnated carbo-graphite (Cu-CG) has been evaluated at different temperatures (RT to 350 degrees C) under dry and (RT and 120 degrees C) oil-lubricated conditions. The results indicate that CG exhibited a lower coefficient of friction due to the presence of a graphite-rich tribo-film that facilitated easy shearing at the contact interface. The wear rate of both the materials increased with temperature and Cu-CG showed a lower wear rate compared to CG, due to its higher hardness caused by the impregnation of copper. Under oil-lubricated conditions, Cu-CG exhibited a lower coefficient of friction and wear rate at RT and 120 degrees C compared to CG. This has been attributed to the reduction in open pores, which allowed the entrapment of oil between surface asperities to hold higher pressure, resulting in an increased hydrodynamic action.
引用
收藏
页数:14
相关论文
共 30 条
  • [1] Allen P. Gordon, 1973, Oxidation Resistance of Selected Mechanical Carbons at 650 Deg C in Dry Flowing Air
  • [2] Assessment E., 2009, Microstructure and Tribological Properties of Graphite/Antimony Composites for Mechanical Seal
  • [3] Study on Tribological Behavior of Zinc Phosphate Impregnated Graphite Under Oil Lubrication Condition
    Chen, Jianhang
    Gao, Siyang
    Wang, Peng
    Xue, Weihai
    Li, Shu
    Duan, Deli
    [J]. JOURNAL OF TRIBOLOGY-TRANSACTIONS OF THE ASME, 2022, 144 (04):
  • [4] Clark W., 1963, Wear, V6, P467, DOI 10.1016/0043-1648(63)90282-5
  • [5] Designing of Copper-Based Alloys for the Impregnation of Carbon-Graphite Materials
    Gulevskii, V. A.
    Antipov, V. I.
    Kolmakov, A. G.
    Vinogradov, L. V.
    Lazarev, E. M.
    Mukhina, Yu. E.
    Gordeev, A. S.
    [J]. RUSSIAN METALLURGY, 2012, (03): : 258 - 261
  • [6] Formation of transfer layer and its effect on friction and wear of carbon-graphite face seal under dry, water and steam environments
    Hirani, H.
    Goikar, S. S.
    [J]. WEAR, 2009, 266 (11-12) : 1141 - 1154
  • [7] Frictional characteristics of impregnated graphite with different graphitization degree versus chromium stainless steel under varying PV values
    Jin, Jie
    Peng, Xudong
    Jiang, Jinbo
    Meng, Xiangkai
    Zhao, Wenjing
    [J]. TRIBOLOGY INTERNATIONAL, 2020, 146
  • [8] On the tribological behaviour of mechanical seal face materials in dry line contact - Part I. Mechanical carbon
    Jones, GA
    [J]. WEAR, 2004, 256 (3-4) : 415 - 432
  • [9] On the tribological behaviour of mechanical seal face materials in dry line contact - Part II. Bulk ceramics, diamond and diamond-like carbon films
    Jones, GA
    [J]. WEAR, 2004, 256 (3-4) : 433 - 455
  • [10] Kisan M., 1993, Standard