[1] Reinert L, Green I, Gimmler S, et al.Tribological behavior of self-lubricating carbon nanoparticle reinforced metal matrix composites[J].Wear, 2018, 408:72-85 [2] Ali M K A, Xianjun H, Abdelkareem M A A, et al.Novel approach of the graphene nanolubricant for energy saving via anti-friction/wear in automobile engines[J].Tribology International, 2018, 124:209-229 [3]Zhang L, Wang Q D, Liu G P, et al.Tribological behavior of carbon nanotube-reinforced AZ91D composites processed by cyclic extrusion and compression[J].Tribology Letters, 2018, 66(2):71- [4]张栋, 胡晓刚, 仝毅, 等.纳米金刚石用做润滑添加剂的研究进展[J].润滑油, 2006, 21(1):50-54 [5]Zhang D, Hu X G, Tong Yi, et al.The research development of nanodiamond as a lubricating additive[J].Lubricating Oil, 2006, 21(1):50-54 [6]Novak C, Kingman D, Stern K, et al.Tribological properties of paraffinic oil with nanodiamond particles[J].Tribology Transactions, 2014, 57(5):831-837 [7] Elomaa O, Hakala T J, Myllym?ki V, et al.Diamond nanoparticles in ethylene glycol lubrication on steel–steel high load contact[J].Diamond and Related Materials, 2013, 34:89-94 [8]柯刚, 浣石, 黄风雷.丙二胺改性纳米金刚石在润滑油中的摩擦学行为[J].润滑与密封, 2009, 34(6):55-58 [9]Ke G, Huan S, Huang F L, et al.Study on Tribological behaviors of lubricant containing nanodiamond modified with 1,3-propanediamine[J].Lubrication Engineering, 2009, 34(6):55-58 [10]张家玺, 刘琨, 胡献国, 等.纳米金刚石颗粒对发动机润滑油摩擦学特性的影响[J].摩擦学学报, 2002, 22(1):44-48 [11]Zhang J X, Liu K, Hu X G, et al.Effect of ultra-dispersed diamond nanoparticles as additive on the tribological properties of 15W30 engine oil[J].Tribology, 2002, 22(1):44-48 [12]张传安, 乔玉林, 池俊成, 等.含纳米金刚石润滑油减摩抗磨添加剂的摩擦学性能[J].中国表面工程, 2002, 15(2):29-32 [13]Zhang C A, Qiao Y L, Chi J C, et al.The tribological properties of anti-wear additive containing nano-diamond powder in lubricating oil[J].China Surface Engineering, 2002, 15(2):29-32 [14]Lee G J, Kim C K, Bae Y, et al.Surface modification to improve hydrophobicity of detonation nanodiamond[J].Journal of nanoscience and nanotechnology, 2012, 12(7):5995-5999 [15] Lee G J, Park J J, Lee M K, et al.Stable dispersion of nanodiamonds in oil and their tribological properties as lubricant additives [J].Applied Surface Science, 2017, 415:24-27 [16]Wei J X, Cai M R, Zhou F, et al.Candle soot as particular lubricant additives[J].Tribology Letters, 2014, 53(3):521-531 [17] 许向阳.纳米金刚石的解团聚与稳定分散研究 [D]. 长沙:中南大学, 2007. [18]Xu X Y.Deagglomeration and stable dispersion of detonation nanodiamond particles [D]. Changsha: Central South University, 2007. [19] Wu H, Zhao J W, Cheng X W, et al.Friction and wear characteristics of TiO2 nano-additive water-based lubricant on ferritic stainless steel[J].Tribology International, 2018, 117:24-38 [20] Varga M, Izak T, Vretenar V, et al.Diamond/carbon nanotube composites: Raman, FTIR and XPS spectroscopic studies [J].Carbon, 2017, 111:54-61 [21]Li C C, Huang C L.Preparation of clear colloidal solutions of detonation nanodiamond in organic solvents[J].Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2010, 353(1):52-56 [22]李川, 张强强, 李中洋, 等.生物柴油碳烟分散特性对液体石蜡摩擦学行为的影响[J].化工学报, 2018, 69(6):274-282 [23]Li C, Zhang Q Q, Li Z Y, et al.Dispersion of biodiesel soot and its influence on tribological behavior of liquid paraffin[J].Journal of Chemical Industry and Engineering, 2018, 69(6):274-282 [24] Wang B B, Hu E Z, Tu Z Q, et al.Characterization and tribological properties of rice husk carbon nanoparticles Co-doped with sulfur and nitrogen[J].Applied Surface Science, 2018, 462:944-954 [25]Shenderova O, Vargas A, Turner S, et al.Nanodiamond-based nanolubricants: investigation of friction surfaces[J].Tribology Transactions, 2014, 57(6):1051-1057 [26]Peng D X, Kang Y, Hwang R M, et al.Tribological properties of diamond and SiO2 nanoparticles added in paraffin[J].Tribology international, 2009, 42(6):911-917 [27]Kim H S, Park J W, Park S M, et al.Tribological characteristics of paraffin liquid with nanodiamond based on the scuffing life and wear amount[J].Wear, 2013, 301(1-2):763-767 [28] Dai W, Kheireddin B, Gao H, et al.Roles of nanoparticles in oil lubrication[J].Tribology International, 2016, 102:88-98 [29]Joly-Pottuz L, Bucholz E W, Matsumoto N, et al.Friction properties of carbon nano-onions from experiment and computer simulations[J].Tribology Letters, 2010, 37(1):75- [30]Shi B, Guo J H, Cao X A, et al.Effects of carbon soot from the combustion of diesel fuels on the tribological properties of lubricating oil and diesel fuels[J].Industrial Lubrication and Tribology, 2018, 70(3):532-537 [31]Chu H Y, Hsu W C, Lin J F.Scuffing mechanism during oil-lubricated block-on-ring test with diamond nanoparticles as oil additive[J].Wear, 2010, 268(11-12):1423-1433 [32]刘天霞, 胡恩柱, 宋汝鸿, 等.生物质燃油碳烟颗粒的分散特性[J].化工学报, 2015, 66(4):1506-1513 [33]Liu T X, Hu E Z, Song R H, et al.Dispersion characteristics of biofuel soot particles[J].Journal of Chemical Industry and Engineering, 2015, 66(4):1506-1513 |