Journal of Mechanical Engineering ›› 2025, Vol. 61 ›› Issue (10): 19-35.doi: 10.3901/JME.2025.10.019
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SHI Jiadong1,2, MA Guozheng2, LI Guolu1, LI Zhen3, ZHAO Haichao4, WANG Haidou2,4
Received:2024-11-13
Revised:2025-01-22
Online:2025-05-20
Published:2025-07-12
CLC Number:
SHI Jiadong, MA Guozheng, LI Guolu, LI Zhen, ZHAO Haichao, WANG Haidou. Research Progress on the Tribological Properties of Diamond-like Carbon Films in Typical Environments[J]. Journal of Mechanical Engineering, 2025, 61(10): 19-35.
| [1] Dhanola A,Khanna N,Gajrani K K. A critical review on liquid superlubricitive technology for attaining ultra-low friction[J]. Renewable and Sustainable Energy Reviews,2022,165:112626. [2] Wang R,Zhang F,Yang K,et al. Important contributions of carbon materials in tribology:From lubrication abilities to wear mechanisms[J]. Journal of Alloys and Compounds,2024,979:173454. [3] Luo J,Zhou X. Superlubricitive engineering-Future industry nearly getting rid of wear and frictional energy consumption[J]. Friction,2020,8(4):643-665. [4] Zhou Y,Guo P,Sun L,et al. Microstructure and property evolution of diamond-like carbon films co-doped by Al and Ti with different ratios[J]. Surface & Coatings Technology,2019,361:83-90. [5] Yetim A F,Kovacı H,Kasapoğlu A E,et al. Influences of Ti,Al and V metal doping on the structural,mechanical and tribological properties of DLC films[J]. Diamond and Related Materials,2021,120:108639. [6] Zeng Q,Erdemir A,Erylimaz O. Ultralow friction of ZrO2 ball sliding against DLC films under various environments[J]. Applied Sciences,2017,7(9):938. [7] 杜娟,高深远,虞文军,等. DLC薄膜对A100钢的摩擦学及力学性能影响[J/OL]. 中国表面工程. https://link.cnki.net/urlid/11.3905.tg.20241202.0922.002. DU Juan,GAO Shenyuan,YU Wenjun,et al. Influence of DLC film on the tribological and mechanical properties of a100 steel[J/OL]. China Surface Engineering. https://link.cnki.net/urlid/11.3905.tg.20241202.0922.002. [8] Klaus B,Dieter H. History of diamond-like carbon films-From first experiments to worldwide applications[J]. Surface & Coatings Technology,2014,242:214-225. [9] Aisenberg S,Chabot R. Ion-beam deposition of thin films of diamond-like carbon [J]. Journal of Applied Physics,1971,42(7):2953-2958. [10] Johnson J A,Woodford J B,Rajput D,et al. Carbon-hydrogen bonding in near-frictionless carbon[J]. Applied Physics Letters,2008,93(13):131911. [11] Wang L,Su J F,Nie X. Corrosion and tribological properties and impact fatigue behaviors of TiN- and DLC- coated stainless steels in a simulated body fluid environment[J]. Surface & Coatings Technology,2010,205(5):1599-1605. [12] LIH,XU T,Wang C,et al. Tribochemical effects on the friction and wear behaviors of a -C:H and a -C films in different environment[J]. Tribology International,2007,40(1):132-138. [13] Zeng A,Liu E,Annergren I F,et al. EIS capacitance diagnosis of nanoporosity effect on the corrosion protection of DLC films[J]. Diamond and Related Materials,2002,11:160-168. [14] Wei P,HE M,AO W. Molecular dynamics study of the frictional behaviors of diamond-like carbon films[J]. Applied Physics A,2021,127(9):652. [15] 李琪刚,陈仁德,李昊,等. 同步脉冲偏压对HiPIMS制备DLC薄膜结构和性能的影响[J/OL]. 中国表面工程. https://link.cnki.net/urlid/11.3905.TG.20241219.1414.002. LI Qigang,CHEN Rende,LI Hao,et al. Effect of synchronous pulsed-bias on structure and mechanical properties of DLC films by HiPIMS technique[J/OL]. China Surface Engineering. https://link.cnki.net/urlid/11.3905.TG.20241219.1414.002. [16] 周琼,岗志远,黄彪,等. 退火温度对DLC和Si-DLC涂层微观结构和摩擦学性能的影响[J]. 中国表面工程,2024,37(4):206-217.ZHOU Qiong,GANG Zhiyuan,HUANG Biao,et al. Effect of annealing temperature on microstructure and tribological properties of DLC and Si-DLC coatings[J]. China Surface Engineering,2024,37(4):206-217. [17] 郑韶先,李强,霍磊. CO2环境下DLC与不同对偶的摩擦学机理分析[J]. 兰州理工大学学报,2019,45(5):6-11.ZHENG Shaoxian,LI Qiang,HUO Lei,et al. Tribological mechanism analysis of DLC film and its different matings in CO2 enviroment[J]. Journal of Lanzhou University of Technology,2019,45(5):6-11. [18] Dhandapani V S,Kang K M,Seo K J,et al. Enhancement of tribological properties of DLC by incorporation of amorphous titanium using magnetron sputtering process[J]. Ceramics International,2019,45(9):11971-11981. [19] WU D,Ren S,PU J,et al. A comparative study of tribological characteristics of hydrogenated DLC film sliding against ceramic mating materials for helium applications[J]. Applied Surface Science,2018,441:884-894. [20] Guo F,Dong G,Qin L,et al. Tribological performance of DLC coating under aqueous solutions[J]. Lubrication Science,2019,31(6):262-272. [21] Zhang T F,Jiang F,Liao T T,et al. Tribological behavior of diamond like carbon film sliding against CoCrMo or Al2O3 in air and water environment[J]. Tribology International,2016,95:456-461. [22] Guo C Q,Lin S S,Gao D,et al. Modulation of Si on microstructure and tribo-mechanical properties of hydrogen-free DLC films prepared by magnetron sputtering[J]. Applied Surface Science,2020,509:145381. [23] Wang J,Wang L,Chen H,et al. Molecular dynamics simulation of friction in DLC films with different sp3 contents[J]. Tribology International,2023,190:109050. [24] LI Q,Huang T,Yang M,et al. Effects of gradient structure and modulation period of Ta/TaN/Ta(C,N) / Ta-DLC multilayer coatings prepared by HiPIMS[J]. Surface & Coatings Technology,2023,459:129406. [25] Jeng Y R,Islam S,WU K T,et al. Investigation of nano-mechanical and tribological properties of hydrogenated diamond like carbon (DLC) coatings[J]. Journal of Mechanics,2016,33(6):769-776. [26] Khun N W,Lee P M,Toh W Q,et al. Tribological behavior of nickel-doped diamond-like carbon thin films prepared on silicon substrates via magnetron sputtering deposition[J]. Tribology Transactions,2016,59(5):845-855. [27] 魏晨阳,白琴,郭鹏,等. HiPIMS占空比对Al合金表面Ti/DLC涂层力学和摩擦性能的影响[J]. 中国表面工程,2023,36(4):77-88.WEI Chenyang,BAI Qin,GUO Peng,et al. Effect of duty ratio on structure,mechanical and frictional properties of Ti/DLC coatings on Al alloy via HiPIMS[J]. China Surface Engineering,2023,36(4):77-88. [28] Tanaka I,Nakano T,Kousaka H,et al. Tribological behavior of unlubricated sliding between a steel ball and Si-DLC deposited by ultra-high-speed coating employing an MVP method[J]. Surface & Coatings Technology,2017,332:128-134. [29] LI A,Chen Q,WU G,et al. Probing the lubrication mechanism of multilayered Si-DLC coatings in water and air environments[J]. Diamond and Related Materials,2020,105:107772. [30] 宁可心,王鹏,江海霞,等. 含氢无定型碳摩擦转移膜结构演化规律研究[J]. 摩擦学学报,2021,41(4):492.NING Kexin,WANG Peng,JIANG Haixia,et al. Structural evolution of the transfer Film of a-C:H[J]. Tribology,2021,41(4):492. [31] Deng W,Wang Y,Chen X,et al. Design architecture of colorful Si-DLC / PLC nanostructured multilayer films for robust superlubricity at high contact stress in dry N2 atmosphere[J]. Applied Surface Science,2022,595:153535. [32] 曾志翔,李红轩,王立平,等. 环境气氛对类金刚石薄膜摩擦学行为的影响[J]. 材料科学与工程学报,2005,23(5):595-597.ZENG Zhixiang,LI Hongxuan,WANG Liping,et al. Influence of ambient gas on the frictional behaviors of diamond-like carbon films[J]. Journal of Materials Science & Engineering,2005,23(5):595-597. [33] Eryilmaz O L,Erdemir A. TOF-SIMS and XPS characterization of diamond-like carbon films after tests in inert and oxidizing environments[J]. Wear,2008,265(1-2):244-254. [34] Wang X,Wang P,Yang S,et al. Tribological behaviors of fullerene-like hydrogenated carbon (FL-C:H) film in different atmospheres sliding against Si3N4 ball[J]. Wear,2008,265(11-12):1708-1713. [35] Eryilmaz O L,Erdemir A. Surface analytical investigation of nearly-frictionless carbon films after tests in dry and humid nitrogen[J]. Surface & Coatings Technology,2007,201(16-17):7401-7407. [36] Holmberg K,Laukkanen A,Hakala T,et al. Topography orientation effects on friction and wear in sliding DLC and steel contacts,part 3:Experiments under dry and lubricated conditions[J]. Wear,2021,486-487:204093. [37] Komelj M,Kalin M,Durham J. Ab- initioinvestigation of chemical-bond formation at the diamond-like carbon surface[J]. Lubrication Science,2014,26(6):440-445. [38] Wang Y,Yin Z,Fan D,et al. Friction behaviors of DLC films in an oxygen environment:An atomistic understanding from ReaxFF simulations[J]. Tribology International,2022,168:107448. [39] Bai M,Yang L,LIJ,et al. Mechanical and tribological properties of Si and W doped diamond like carbon (DLC) under dry reciprocating sliding conditions[J]. Wear,2021,484-485:204046. [40] LI W,Cao X,Kong L,et al. The impact of dopants (B,H) on the mechanical behavior and tribological performance of DLC film under water lubrication[J]. Tribology International,2022,174:107783. [41] YU G,Ren K,WU W,et al. The occurrence of ultralow friction even superlubricity for graphene oxide/ hydrogenated diamond-like carbon composites in multi- environments[J]. Vacuum,2024,220:112803. [42] Costa R P C,Marciano F R,Lima-Oliveira D A,et al. Tribological effect of iron oxide residual on the DLC film surface under seawater and saline solutions[J]. Surface Science,2011,605(7-8):783-787. [43] Alazizi A,Draskovics A,Ramirez G,et al. Tribochemistry of carbon films in oxygen and humid environments:Oxidative wear and galvanic corrosion[J]. Langmuir,2016,32(8):1996-2004. [44] Jang S,Chen Z,Kim S H. Environmental effects on superlubricity of hydrogenated diamond-like carbon:Understanding tribochemical kinetics in O2 and H2O environments[J]. Applied Surface Science,2022,580:152299. [45] Liu Y,Zhang H,Luo Y,et al. Probing the low friction mechanism of hydrogen-free DLC film in oxygen and nitrogen environments by first-principles calculations and molecular dynamics simulation[J]. Surface & Coatings Technology,2023,455:129219. [46] Wang Y,Tan L,Yang L,et al. Synergistic effect of physical and chemical reactions on friction behaviors of DLC films in humid air[J]. Materials Today Communications,2022,33:104317. [47] Dickrell P L,Argibay N,Eryilmaz O L,et al. Temperature and water vapor pressure effects on the friction coefficient of hydrogenated diamondlike carbon films[J]. Journal of Tribology,2009,131(3):1-5. [48] Kim J I,Lee W Y,Tokoroyama T,et al. Superlubricity with graphitization in Ti-doped DLC / steel tribopair:Response on humidity and temperature[J]. ACS Applied Materials & Interfaces,2023,15(15):19715- 19729. [49] LI H,XU T,Wang C,et al. Humidity dependence on the friction and wear behavior of diamond-like carbon film in air and nitrogen environments[J]. Diamond and Related Materials,2006,15(10):1585-1592. [50] XU P,Cao X,Zhang M,et al. Friction and wear behaviors of different DLC films sliding against SiC and Si3N4 balls under high relative humidity[J]. Diamond and Related Materials,2020,108:107977. [51] LI X,Luo Y,LI J,et al. Predominant role of fatigue crack evolution and tribo-chemistry on tribological behavior of Si-DLC film under different relative humidity[J]. Tribology International,2023,181:108326. [52] Erdemir A,Eryilmaz O L,Kim S H. Effect of tribochemistry on lubricity of DLC films in hydrogen[J]. Surface & Coatings Technology,2014,257:241-246. [53] Polaki S R,Kumar N,Ganesan K,et al. Tribological behavior of hydrogenated DLC film:Chemical and physical transformations at nano-scale[J]. Wear,2015,338-339:105-113. [54] Marino M J,Hsiao E,Chen Y,et al. Understanding run-in behavior of diamond-like carbon friction and preventing diamond-like carbon wear in humid air[J]. Langmuir,2011,27(20):12702-12708. [55] Beake B D,McMaster S J,Liskiewicz T W,et al. Influence of Si- and W- doping on micro-scale reciprocating wear and impact performance of DLC coatings on hardened steel[J]. Tribology International,2021,160:107063. [56] Amanov A,Watabe T,Tsuboi R,et al. Fretting wear and fracture behaviors of Cr-doped and non-doped DLC films deposited on Ti6Al4V alloy by unbalanced magnetron sputtering[J]. Tribology International,2013,62:49-57. [57] Liu S,Zhang C,Osman E,et al. Influence of tribofilm on superlubricity of highly-hydrogenated amorphous carbon films in inert gaseous environments[J]. Science China Technological Sciences,2016,59(12):1795-1803. [58] Song W,Wang S,LU Y,et al. Tribological performance of DLC-coated ceramics against cemented carbide under dry sliding conditions[J]. Ceramics International,2021,47(12):16926-16934. [59] Matta C,Eryilmaz O L,De Barros Bouchet M I,et al. On the possible role of triboplasma in friction and wear of diamond-like carbon films in hydrogen- containing environments[J]. Journal of Physics D:Applied Physics,2009,42(7):075307. [60] Liu Y,Jiang Y,Sun J,et al. Durable superlubricity of hydrogenated diamond-like carbon film against different friction pairs depending on their interfacial interaction[J]. Applied Surface Science,2021,560:150023. [61] 管筱竹,郑贺,郭鹏,等. Si/O含量对DLC涂层腐蚀性能的影响[J]. 中国表面工程,2024,37(6):283-296.GUAN Xiaozhu,ZHENG He,GUO Peng,et al. Effect of Si/O content on the long-term electrochemical corrosion performance of DLC coatings[J]. China Surface Engineering,2024,37(6):283-296. [62] 李超,马国佳,孙刚,等. 基体偏压对316L不锈钢表面多层Ti-DLC薄膜摩擦及腐蚀行为的影响[J]. 中国表面工程,2023,36(1):189-199.LI Chao,MA Guojia,SUN Gang,et al. Effects of substrate bias voltage on friction and corrosion behavior of multilayer Ti-DLC film on the surface of 316L stainless steel[J]. China Surface Engineering,2023,36(1):189-199. [63] Cao L,Liu J,Wan Y,et al. Corrosion and tribocorrosion behavior of W doped DLC coating in artificial seawater[J]. Diamond and Related Materials,2020,109:108019. [64] Niiyama Y,Takeno T,Kurihara K,et al. Effect of sliding history on super-low friction of diamond-like carbon coating in water lubrication[J]. Tribology Letters,2017,65(2):63. [65] Zhang T F,Xie D,Huang N,et al. The effect of hydrogen on the tribological behavior of diamond like carbon (DLC) coatings sliding against Al2O3 in water environment[J]. Surface & Coatings Technology,2017,320:619-623. [66] Huang J,Wang L,Liu B,et al. In vitro evaluation of the tribological response of Mo-doped graphite-like carbon film in different biological media[J]. ACS Appl. Mater. Interfaces,2015,7(4):2772-2783. [67] YE Y,Jia S,Zhang D,et al. A study for anticorrosion and tribological behaviors of thin / thick diamond-like carbon films in seawater[J]. Surface Topography:Metrology and Properties,2018,6(1):14004. [68] Chen H,Zhang G,LU Z,et al. Frictional behaviors of diamond-like carbon films under water lubrication:A molecular dynamics study[J]. Tribology International,2021,153:106609. [69] Guo P,Geng Z,LU Z,et al. Probing the lubrication mechanism of rough diamond-like carbon films against silicon nitride under water[J]. Tribology International,2018,128:248-259. [70] NiiyamA Y,Shimizu N,Kuwayama A,et al. Friction and delamination properties of self-mating diamond-like carbon coatings in water[J]. Tribology Letters,2016,62(2):34-40. [71] 张绍筠,岳文,王艳艳,等. 清净剂、分散剂与ZDDP复配对a-C薄膜摩擦学性能的影响[J]. 中国表面工程,2023,36(6):90-99.ZHANG Shaojun,YUE Wen,WANG Yanyan,et al. Effect of detergent,dispersant,and zinc dialkyldithiophosphate on the tribological properties of amorphous-C films[J]. China Surface Engineering,2023,36(6):90-99. [72] Niiyama Y,Shimizu N,Kuwayama A,et al. Effect of running-in for delamination and friction properties of self-mating diamond-like carbon coatings in water[J]. Wear,2017,378-379:27-34. [73] YE Y,Wang Y,MA X,et al. Tribocorrosion behaviors of multilayer PVD DLC coated 304L stainless steel in seawater[J]. Diamond and Related Materials,2017,79:70-78. [74] Cui M,PU J,Liang J,et al. Corrosion and tribocorrosion performance of multilayer diamond-like carbon film in NaCl solution[J]. RSC Advances,2015,5(127):104829-104840. [75] Wang S,Zhang G,FU A,et al. The corrosion and tribological behaviors of DLC film in CO2 saturated NaCl solution with high Cl [76] PU J,Wang J,HE D,et al. Corrosion and tribocorrosion behaviour of super-thick diamond-like carbon films deposited on stainless steel in NaCl solution[J]. Surface and Interface Analysis,2016,48(6):360-367. [77] SU Y,MA Y,Huang W,et al. The effects of medium and friction pair on the tribological behavior of Mo- doped DLC films[J]. Diamond and Related Materials,2024,148:111464. [78] HE D,Feng Z,Liang R,et al. Effect of Cr3C2 content on the tribo-corrosion behaviors of Cr3C2-NiCr/DLC duplex coatings[J]. Surface & Coatings Technology,2024,489:131134. [79] LI Y,QI C,Guo Z,et al. Effects of CrC interlayer on tribocorrosion properties of DLC-coated TC4 alloy in a 0.9 wt% NaCl solution[J]. Diamond and Related Materials,2024,149:111538. [80] Ramos B B,Vicente F A,Hammes G,et al. Enhancing corrosion and tribology performance of stainless steel with DLC coatings:Effects of doping and multilayered structures[J]. Surface & Coatings Technology,2024,477:130334. [81] Marciano F R,Almeida E C,Lima-Oliveira D A,et al. Improvement of DLC electrochemical corrosion resistance by addiction of fluorine[J]. Diamond and Related Materials,2010,19(5-6):537-540. [82] Sui J H,Zhang Z G,Cai W. Surface characteristics and electrochemical corrosion behavior of fluorinated diamond-like carbon (F-DLC) films on the NiTi alloys[J]. Nuclear Instruments and Methods in Physics Research Section B:Beam Interactions with Materials and Atoms,2009,267(15):2475-2479. [83] Khun N W,Liu E,Zeng X T. Corrosion behavior of nitrogen doped diamond-like carbon thin films in NaCl solutions[J]. Corrosion Science,2009,51(9):2158-2164. [84] Kim H G,Ahn S H,Kim J G,et al. Corrosion performance of diamond-like carbon (DLC)-coated Ti alloy in the simulated body fluid environment[J]. Diamond and Related Materials,2005,14(1):35-41. [85] Guan X,Wang Y,Wang J,et al. Adaptive capacities of chromium doped graphite-like carbon films in aggressive solutions with variable pH[J]. Tribology International,2016,96:307-316. [86] Song J,Tian H,LI J,et al. Effect of methane and acetylene pre-gases on the corrosion resistance of DLC coatings[J]. Vacuum,2024,221:112899. [87] YE Y,Wang C,Wang Y,et al. A novel strategy to enhance the tribological properties of Cr / GLC films in seawater by surface texturing[J]. Surface & Coatings Technology,2015,280:338-346. [88] Zhang R,Wang L. Synergistic improving of tribological properties of amorphous carbon film enhanced by F-Si-doped multilayer structure under corrosive environment[J]. Surface & Coatings Technology,2015,276:626-635. [89] Sun J,FU Z,Zhang W,et al. Friction and wear of Cr-doped DLC films under different lubrication conditions[J]. Vacuum,2013,94:1-5. [90] Cicek H. Wear behaviors of TiN/TiCN/DLC composite coatings in different environments[J]. Ceramics International,2018,44(5):4853-4858. [91] Yang B,Huang Z H,Liu C S,et al. Tribological performance and liquid impact erosion resistance of Ti-containing amorphous carbon coatings[J]. Surface & Coatings Technology,2007,201(9-11):5157-5160. [92] 何东青,梁瑞瑞,冯子涵,等. 中间层厚度对Cr3C2-NiCr/DLC复合涂层腐蚀磨损行为的影响[J/OL]. 中国表面工程. https://link.cnki.net/urlid/11.3905.tg.20241217.1919.029. HE Dongqing,LIANG Ruirui,FENG Zihan,et al. The influence of interlayer thicknesses on the tribo-corrosion behaviors of Cr3C2-NiCr/DLC duplex coatings[J/OL].China Surface Engineering. https://link.cnki.net/urlid/11.3905.tg.20241217.1919.029. [93] Sun H,Yang L,WU H,et al. Pd nanoparticles lubricant additive catalyze the construction of carbon-based tribofilm to reduce graphitization-induced wear of DLC films under boundary lubrication[J]. Applied Surface Science,2023,641:158545. [94] Persson K,Gåhlin R. Tribological performance of a DLC coating in combination with water-based lubricants[J]. Tribology International,2003,36(11):851-855. [95] Aboua K A M,Umehara N,Kousaka H,et al. Effect of mating material and graphitization on wear of a-C:H coating in boundary base oil lubrication[J]. Tribology Letters,2020,68(1):30. [96] Djoufack M H,May U,Bagcivan N,et al. Tribological evaluation of hydrogenated DLC in Diesel lubricated model test[J]. Surface & Coatings Technology,2014,258:381-391. [97] Escudeiro A,Polcar T,Cavaleiro A. Tribological behaviour a-C and a-C:H films doped with Ti in biological solutions[J]. Vacuum,2011,85(12):1144-1148. [98] Abdullah T H,Wakayama M,Tokoroyama T,et al. Wear behaviour of tetrahedral amorphous diamond-like carbon (ta-C DLC) in additive containing lubricants[J]. Wear,2013,307(1-2):1-9. [99] Tasdemir H A,Wakayama M,Tokoroyama T,et al. Ultra-low friction of tetrahedral amorphous diamond-like carbon (ta-C DLC) under boundary lubrication in poly alpha-olefin (PAO) with additives[J]. Tribology International,2013,65:286-294. [100] Mabuchi Y,Higuchi T,Weihnacht V. Effect of sp2/sp3 bonding ratio and nitrogen content on friction properties of hydrogen-free DLC coatings[J]. Tribology International,2013,62:130-140. [101] Guo Y,Guo P,Sun L,et al. Tribological properties of Ti-doped diamond-like carbon coatings under dry friction and PAO oil lubrication[J]. Surface and Interface Analysis,2018,51(3):361-370. [102] Vengudusamy B,Grafl A,Preinfalk K. Influence of silicon on the wear properties of amorphous carbon under dry and lubricated conditions[J]. Tribology Letters,2014,53(3):569-583. [103] SU Y,Cai L,Huang W,et al. Improvement the tribological properties of diamond-like carbon film via Mo doping in diesel condition[J]. Vacuum,2022,198:110920. [104] FU H,Fan X,LI W,et al. Tribological behaviors of fluid-lubricated DLC films under sliding and fretting conditions[J]. Applied Surface Science,2018,459:411-421. [105] 孙繁新,史彦斌,蒲吉斌,等. 苛刻空间环境下固体润滑涂层在谐波齿轮减速器表面的服役性能评价[J]. 中国表面工程,2023,36(5):76-87.SHUN Fanxin,SHI Yanbin,PU Jibin,et al. Service performance evaluation of solid-lubrication coating on harmonic gear reducer surface in harsh space environment[J]. China Surface Engineering,2023,36(5):76-87. [106] Manhabosco T M,Müller I L. Tribocorrosion of diamond-like carbon deposited on Ti6Al4V[J]. Tribology Letters,2009,33(3):193-197. [107] Wang Y,Wang L,Wang S C,et al. Nanocomposite microstructure and environment self-adapted tribological properties of highly hard graphite-like film[J]. Tribology Letters,2010,40(3):301-310. [108] Liu X,Wang L,PU J,et al. Surface composition variation and high-vacuum performance of DLC/ILs solid-liquid lubricating coatings:Influence of space irradiation[J]. Applied Surface Science,2012,258(20):8289-8297. [109] Shi B,WU Y,Liu Y,et al. A review on diamond-like carbon-based films for space tribology[J]. Materials Science and Technology,2022,38(15):1151-1167. [110] LI W,Fan X,LI H,et al. Probing carbon-based composite coatings toward high vacuum lubrication application[J]. Tribology International,2018,128:386-396. [111] Cui L,LU Z,Wang L. Environmental effect on the load-dependent friction behavior of a diamond-like carbon film[J]. Tribology International,2015,82:195-199. [112] 程志强,李春燕,高凯雄. 真空宽载下二硫化钼/碳复合薄膜的超低磨损机制[J]. 中国表面工程,2024,37(3):175-184.CHENG Zhiqiang,LI Chunyan,GAO Kaixiong. Ultra-low wear mechanism of molybdenum disulfide/ carbon composite films under vacuum wide load[J]. China Surface Engineering,2024,37(3):175-184. [113] Fontaine J,Donnet C,Grill A,et al. Tribochemistry between hydrogen and diamond-like carbon films[J]. Surface & Coatings Technology,2001,146-147:286-291. [114] Fontaine J,Le Mogne T,Loubet J L,et al. Achieving superlow friction with hydrogenated amorphous carbon:some key requirements[J]. Thin Solid Films,2005,482(1-2):99-108. [115] Zhang R,PU J,Yang Y,et al. Probing the frictional properties of sulfur-doped diamond-like carbon films under high vacuum by first-principles calculations[J]. Applied Surface Science,2019,481:1483-1489. [116] Andersson J,Erck R A,Erdemir A. Frictional behavior of diamondlike carbon films in vacuum and under varying water vapor pressure[J]. Surface & Coatings Technology,2003,163:535-540. [117] Kovacı H,Baran Ö,Yetim A F,et al. The friction and wear performance of DLC coatings deposited on plasma nitrided AISI 4140 steel by magnetron sputtering under air and vacuum conditions[J]. Surface & Coatings Technology,2018,349:969-979. [118] Donnet C,Fontaine J,Mogne T L,et al. Diamond-like carbon-based functionally gradient coatings for space tribology[J]. Surface & Coatings Technology,1999,120:548-554. [119] Cardoso F,Ferreira F,Cavaleiro A,et al. Performance of diamond-like carbon coatings(produced by the innovative Ne-HiPIMS technology) under different lubrication regimes[J]. Wear,2021,477:203775. [120] Zou Y,Wang X,Wang L. Microstructure and high- temperature tribological properties of Ti/Si co-doped diamond-like carbon films fabricated by twin-targets reactive HiPIMS[J]. Diamond and Related Materials,2024,141:110573. [121] Bhowmick S,Shirzadian S,Alpas A T. High-temperature tribological behavior of Ti containing diamond-like carbon coatings with emphasis on running-in coefficient of friction[J]. Surface & Coatings Technology,2022,431:127995. [122] Evaristo M,Fernandes F,Cavaleiro A. Influence of the alloying elements on the tribological performance of DLC coatings in different sliding conditions[J]. Wear,2023,526-527:204880. [123] Zeng Q,Eryilmaz O,Erdemir A. Superlubricity of the DLC films-related friction system at elevated temperature[J]. RSC Advances,2015,5(113):93147-93154. [124] Amanov A,Watabe T,Tsuboi R,et al. Improvement in the tribological characteristics of Si- DLC coating by laser surface texturing under oil- lubricated point contacts at various temperatures[J]. Surface & Coatings Technology,2013,232:549-560. [125] Liu Y,Zhang H. The synergistic mechanism between graphitized tribofilm and graphitized surface of diamond-like carbon film under different temperature environments[J]. Diamond and Related Materials,2022,123:108875. [126] Kashyap A,Harsha A P,Kondaiah P,et al. Study on galling behaviour of HiPIMS deposited Mo/ DLC multilayer coatings at ambient and elevated temperature[J]. Wear,2022,498-499:204327. [127] YU W,Huang W,Wang J,et al. Compositional design of diamond-like carbon film for tribological performance at elevated temperature:Si and W co- doping[J]. Journal of Non-Crystalline Solids,2022,576:121281. [128] Wang X,Zhang X,Wang C,et al. High temperature tribology behavior of silicon and nitrogen doped hydrogenated diamond-like carbon (DLC) coatings[J]. Tribology International,2022,175:107845. [129] Liu X,Wang L,Xue Q. High vacuum tribological performance of DLC-based solid-liquid lubricating coatings:Influence of atomic oxygen and ultraviolet irradiation[J]. Tribology International,2013,60:36-44. [130] 刘贵昂,谢二庆,王天民. 含氮类金刚石薄膜的紫外辐照研究[J]. 强激光与粒子束,2004,16(3):372-376.LIU Guiang,XIE Erqing,WANG Tianmin. Ultraviolet irradiation of nitrogenous diamond-like films[J]. High Power Laser and Particle Beams,2004,16(3):372-376. [131] 刘贵昂,谢二庆,王天民. 类金刚石薄膜的紫外辐照研究[J]. 功能材料,2002,33(5):497-499.LIU Guiang,XIE Erqing,WANG Tianmin. Ultraviolet irradiation of diamond-like films[J]. Functional Material,2002,33(5):497-499. [132] Shi P,Sun J,Yan W,et al. Roles of phase transition and surface property evolution in nanotribological behaviors of H-DLC:Effects of thermal and UV irradiation treatments[J]. Applied Surface Science,2020,514:145960. [133] JI L,LI H,Zhao F,et al. Influences of ultraviolet irradiation on structure and tribological properties of diamond-like carbon films[J]. Applied Surface Science,2009,255(20):8409-8413. [134] Tagawa M,Yokota K,Matsumoto K,et al. Space environmental effects on MoS2 and diamond-like carbon lubricating films:Atomic oxygen-induced erosion and its effect on tribological properties[J]. Surface & Coatings Technology,2007,202(4-7):1003- 1010. [135] JI L,LI H,Zhao F,et al. Atomic oxygen resistant behaviors of Mo/diamond-like carbon nanocomposite lubricating films[J]. Applied Surface Science,2009,255(7):4180-4184. [136] Gao K,Wang Y,Zhang B,et al. Effect of vacuum atomic oxygen irradiation on the tribological properties of fullerene-like carbon and MoS2 films[J]. Tribology International,2022,170:107499. [137] 刘贵昂,王天民,游佩林,等. γ射线辐照对类金刚石薄膜中氢含量的影响[J]. 光学学报,2002,22(4):505-508.LIU Guiang,WANG Tianmin,YOU Peilin,et al. Effect of γ-ray irradiation on hydrogen content in diamond-like films[J]. Acta Optica Sinica,2002,22(4):505-508. [138] Penkov O V,Kheradmandfard M,Khadem M,et al. Ion-beam irradiation of DLC-based nanocomposite:Creation of a highly biocompatible surface[J]. Applied Surface Science,2019,469:896-903. [139] Zhang N,Lin L,Liu B,et al. Tribological properties improvement of H-DLC films through reconstruction of microstructure and surface morphology by low-energy helium ion irradiation[J]. Diamond and Related Materials,2020,109:108080. |
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