Thermal compression and accumulation effect on lubrication regime transition mechanism of water seal

被引:7
|
作者
Yin, Tuyuan [1 ]
Wei, Dasheng [1 ]
Wang, Tingmei [2 ]
Xie, Zhongliang [3 ]
机构
[1] Beihang Univ, Sch Energy & Power Engn, Beijing 100191, Peoples R China
[2] Chinese Acad Sci, Key Lab Sci & Technol Wear & Protect Mat, Lanzhou 730000, Peoples R China
[3] Northwestern Polytech Univ, Dept Engn Mech, Xian 710072, Peoples R China
关键词
Seal performance; Water bearings; Mixed lubrication; Lubrication transition;
D O I
10.1016/j.triboint.2023.108285
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Research on the thermo-elastic water bearings (TWB) performance is mature, and the temperature effect on bearings lubrication regime transition is studied. The (TWB) lubrication model and numerical simulation of bearings forms the standard. However, the thermal compression and accumulation effect (TCAE) on the water temperature increase from the reciprocating frictional force in a enclosed seal system is ignored. This causes the seal lubrication mechanism and effecting on lifespan factors of TCAE has not been clarified. Thus, we propose the seal working at high pressure with a reciprocating speed of 0.1-0.6 m/s and temperature of 5-25 celcius. Taking the fluid-solid-thermal and wear (FSTW) simulation with measurement reveals the TCAE to seal performance. Results indicate that the seal contact regime increases vastly and the film formation dynamic characterize is hampered due to the TCAE even at the low initial temperature of 5 celcius. The improved insight is that the seal lubrication under TCAE transits obviously from the mixed lubrication to wear regime and degenerates to the elastic-hydraulic lubrication with the speed increasing. The seal lubrication transition mechanism and factors of failure with TCAE is discussed. Moreover, this study of TCAE also builds a framework for thermal models such as mechanical seals, lip seals, and others.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] The mechanism of bubbly to slug flow regime transition in air-water two phase flow: A new transition criterion
    Zhang, Muhao
    Pan, Liang-ming
    Ju, Peng
    Yang, Xiaohong
    Ishii, Mamoru
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2017, 108 : 1579 - 1590
  • [22] The effect of laser texturing of steel surfaces and speed-load parameters on the transition of lubrication regime from boundary to hydrodynamic
    Kovalchenko, A
    Ajayi, O
    Erdemir, A
    Fenske, G
    Etsion, I
    TRIBOLOGY TRANSACTIONS, 2004, 47 (02) : 299 - 307
  • [23] Nonstationary thermoelectric effect in He II and the effect on it of the transition from the laminar to turbulent regime of thermal vibrations
    Natsik, V.D.
    Rybalko, A.S.
    Fizika Nizkikh Temperatur, 2020, 46 (01): : 33 - 48
  • [24] Effect of variation in atmospheric precipitation on the water-thermal regime of arid areas
    Babkin, A.V.
    Meteorologiya i Gidrologiya, 2001, (10): : 71 - 80
  • [25] Study on the Evolution Mechanism and Compression Effect of Coal Pores Subjected to Water Injection
    Lu, Yiyu
    Ye, Maolin
    Ge, Zhaolong
    Zhou, Zhe
    Gong, Shihui
    Wang, Zepeng
    Huang, Shan
    Guan, Yarui
    ENERGY & FUELS, 2022, 36 (02) : 887 - 896
  • [26] Substrate moisture effect on water balance and thermal regime of a tropical extensive green roof
    Jim, C. Y.
    Peng, Lilliana L. H.
    ECOLOGICAL ENGINEERING, 2012, 47 : 9 - 23
  • [27] Effect of water regime and harvest stage on essential oil accumulation in basil plant growing in sandy soil
    João V. R. S. Souza
    Lin Chau Ming
    Marcos A. L. Santos
    James E. Simon
    Hector R. Juliani
    João C. C. Saad
    Irrigation Science, 2021, 39 : 493 - 503
  • [28] Effect of water regime and harvest stage on essential oil accumulation in basil plant growing in sandy soil
    Souza, Joao V. R. S.
    Ming, Lin Chau
    Santos, Marcos A. L.
    Simon, James E.
    Juliani, Hector R.
    Saad, Joao C. C.
    IRRIGATION SCIENCE, 2021, 39 (04) : 493 - 503
  • [29] The effect of laser texturing of SiC surface on the critical load for transition of water lubrication mode from hydrodynamic to mixed
    Wang, XL
    Kato, K
    Adachi, K
    Aizawa, K
    TRIBOLOGY INTERNATIONAL, 2001, 34 (10) : 703 - 711
  • [30] Analysis of Plant Water Transport Mechanism and Water Requirement for Growth Based on the Effect of Thermal Environment
    Lu, Haolin
    Sun, Hongfa
    Long, Jibo
    FORESTS, 2022, 13 (04):