Zhang G Y, Zhao Y Y, Zhao W G, Yan X T, Liang M T. An experimental study on the cryogenic face seal at different inlet pressures. P I Mech Eng J-J Eng 234(9): 1470–1481 (2020)
Towsyfyan H, Gu F S, Ball A D, Liang B. Tribological behaviour diagnostic and fault detection of mechanical seals based on acoustic emission measurements. Friction 7(6): 572–586 (2019)
Zhang G Y, Chen G Z, Zhao W G, Yan X T, Zhang Y. An experimental test on a cryogenic high-speed hydrodynamic non-contact mechanical seal. Tribol Lett 65(3): 80 (2017)
Zhao W G, Zhang G Y, Dong G N. Friction and wear behavior of different seal materials under water-lubricated conditions. Friction 9(4): 697–709 (2021)
Xu L S, Wu J H, Wang Y L, Jia Q, Yan G, Yuan X Y. A novel compound mechanical seal of reusable rocket turbopump with superconducting magnetic force improving lubrication and stability. Tribol Int 159: 106989 (2021)
Zhang G Y, Zhao Y Y, Zhao W G, Liang M T. Study on the friction and wear performance of the micro-surface textured face seal under the water-lubricated conditions. J Braz Soc Mech Sci 41(10): 459 (2019)
Luo J B, Zhou X. Superlubricitive engineering—Future industry nearly getting rid of wear and frictional energy consumption. Friction 8(4): 643–665 (2020)
Lee W, Murashima M, Umehara N, Tokoroyama T, Horaguchi N, Ishimoto T. Realization of near-less friction of ta-CNx coating under R32 refrigerant environment. Tribol Int 168: 107404 (2022)
Jin H Y, Zhou K K, Ji Z J, Tian X C, Chen Y, Lu L H, Ren Y Z, Xu C H, Duan S S, Li J Y, et al. Comparative tribological behavior of friction composites containing natural graphite and expanded graphite. Friction 8(4): 684–694 (2020)
Lee S M, Kang D S, Roh J S. Bulk graphite: Materials and manufacturing process. Carbon Lett 16(3): 135–146 (2015)
Liu B, Zhao H C, Li X F, Yang Z H, Zhang D Q, Liu Z J. Effect of pore structure on the thermophysical and frictional properties of high-density graphite. Micropor Mesopor Mat 330: 111613 (2022)
Jones K L, Matthews G P, Laudone G M. The effect of irradiation and radiolytic oxidation on the porous space of Gilsocarbon nuclear graphite measured with mercury porosimetry and helium pycnometry. Carbon 158: 256–266 (2020)
Jones G A. On the tribological behaviour of mechanical seal face materials in dry line contact: Part I. Mechanical carbon. Wear 256(3–4): 415–432 (2004)
Wang Q L, Sun J R, Yu M Q, Chen Y H. Study on the lubrication film formation and characteristics of different graphite seal composites. J Mech Sci Technol 36(8): 3949–3959 (2022)
Jin J, Peng X D, Jiang J B, Meng X K, Zhao W J. Frictional characteristics of impregnated graphite with different graphitization degree versus chromium stainless steel under varying Pv values. Tribol Int 146: 106063 (2020)
Zhao J, Liu Y J, Liu D Y, Gu Y F, Zheng R, Ma R M, Li S X, Wang Y F, Shi Y J. The tribological performance of metal-/resin-impregnated graphite under harsh condition. Lubricants 10(1): 2 (2021)
Zhao J, Li Q Z, Li S X, Li S C, Chen G Y, Liu X H, He Y Y, Luo J B. Influence of a carbon-based tribofilm induced by the friction temperature on the tribological properties of impregnated graphite sliding against a cemented carbide. Friction 9(4): 686–696 (2021)
Wang Q L, He M, He Y Q, Hu Y F, Liu Q. Microstructure and tribological properties of graphite/antimony composites for mechanical seal. Asian J Chem 26(17): 5657–5662 (2014)
Goto H, Omori S. Friction and wear characteristics of aluminum alloy impregnated carbon composite. J Tribol 121(2): 294–300 (1999)
Jiang X F, Song J J, Su Y F, Zhang Y S, Hu L T. Novel design of copper–graphite self-lubricating composites for reliability improvement based on 3D network structures of copper matrix. Tribol Lett 66(4): 143 (2018)
Chen J H, Gao S Y, Wang P, Xue W H, Li S, Duan D L. Study on tribological behavior of zinc phosphate impregnated graphite under oil lubrication condition. J Tribol 144(4): 041902 (2022)
Xu Y X, Tu C J, Liu Y L, Liu P, Chen G, Tan J, Xiong W, He Y B, Liang S L, Ma Q C. Superior tribology property of zinc phosphate impregnated graphite block at high-temperature oxidative friction. Carbon Lett 32(5): 1365–1376 (2022)
Lin Y F, Liu T L, Wang J, Lu J N, Dong X R, Feng X W. Fabrication and oxidation resistance behavior of phosphate/borate impregnation for graphite. Surf Coat Tech 389: 125632 (2020)
Zhao J Y, Li Y J, Liu Y, Huang W F, Xu Y R. Friction and wear performances of impregnated graphite in ring-on-ring tribological test. Tribol Int 174: 107715 (2022)
Zhang G L, Liu Y, Wang Y C, Liu X F. A friction-dissipation based method for quantity model and prediction of graphite/WC−Ni wear under dry sliding. Tribology 39(2): 221–227 (2019) (in Chinese)
Luo X W, Yu S Y, Sheng X Y, He S Y. Graphite friction coefficient for various conditions. Sci China Ser A 44(8): 248–252 (2001)
Kim Y, Kim J. Temperature effect of friction and wear characteristics for solid lubricating graphite. Mod Phys Lett B 29(6–7): 1540018 (2015)
Yan Y T, Li X J, Hu G Y, Hu T Q, Sun Z L. Friction/wear behaviors and predication of graphite seal material under high temperature. J Aerosp Power 29(2): 314–320 (2014) (in Chinese)
Iwasa Y, Ashaboglu A F, Rabinowicz E R, Tachibana T, Kobashi K. Cryotribology of diamond and graphite. Cryogenics 37(12): 801–805 (1997)
Goilkar S S, Hirani H. Parametric study on balance ratio of mechanical face seal in steam environment. Tribol Int 43(5–6): 1180–1185 (2010)
Ding H Q, Jiang S Y. Comparative study on tribological properties of isostatic graphite and carbon graphite under dry sliding and water-lubricated conditions. J Southeast Univ (English Ed) 36(3): 273–277 (2020)
Zhao Y Y, Zhang G Y, Liang M T, Zeng Q F. Study on the friction and wear performance of lightly loaded reciprocating carbon/aramid-based composites. Adv Mater Sci Eng 2021: 9924690 (2021)
Luo X W, Yu S Y, Sheng X Y, He S Y, Zhang Z S. Effect of temperatures on the friction behavior of graphite used in a nuclear reactor. Tribology 24(5): 402–405 (2004) (in Chinese)
Zhang G Y, Zhao W G, Chen Y, Wei J C. Active controllability and separation mechanics of non-contact hydrostatic mechanical seal. J Aerosp Power 29(10): 2515–2522 (2014) (in Chinese)
Yu X, Wang C B, Sun X J. The analyses of 9Cr18 and GCr15 ball–disc friction couple’s tribological property. T Meter Heat Treat 23(4): 47–50 (2002) (in Chinese)
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