欢迎登录材料期刊网

材料期刊网

高级检索

随着纳米科学技术的迅速发展,将纳米材料应用于摩擦润滑领域受到了广泛的重视.综述了纳米硫化物的优异性质及其复合涂层在摩擦学中新的研究进展.概括了目前纳米复合涂层的制备方法,介绍了纳米硫化物及其复合涂层优异的摩擦性能及其抗磨减摩机理.最后提出了纳米硫化物及其涂层在摩擦学中的研究方向.

参考文献

[1] 白春礼.纳米科学与技术[M].昆明:云南出版社,1995
[2] Cizaire L;Vacher B;Mogne T L et al.Mechanisms of ultra-low friction by hollow inorganic fullerene-like MoS2 nanoparticles[J].Surface and Coatings Technology,2002,160:282.
[3] Higgs C;Heshmat C;Heshmat H .Comparative evaluation of MoS2 and WS2 as powder lubricants in high speed, multi-pad journal bearings[J].Tribology,1999,121(03):625.
[4] 邢鹏飞,柳卓,由继龙,海力,翟玉春.WS2微粉的物理性能及热稳定性[J].中国有色金属学报,1999(04):811-814.
[5] 陈祖熊 .二维无机功能材料[J].功能材料,1994,25(03):280.
[6] 张文钲.空心富勒烯纳米MoS2和WS2[J].中国钼业,2002(04):18-20.
[7] L. Rapoport;V. Leshchinsky;M. Lvovsky;O. Nepomnyashchy;Yu. Volovik;R. Tenne .Mechanism of friction of fullerenes[J].Industrial Lubrication and Tribology,2002(4):171-176.
[8] Rapoport L Lvovsky et al.Slow release of fullerene-like WS2nanoparticles as a superior solid lubrication mechanism in composite matrices[J].Advances in Engineering Materials,2001,3:71.
[9] 徐滨士.纳米表面工程[M].北京:化学工业出版社,2004
[10] 尹健.纳米材料在注射模表面强化中的应用前景[J].模具工业,2002(08):50-52.
[11] 戴达煌.现代材料表面技术科学[M].北京:冶金工业出版社,2004
[12] 荆阳,庞思勤,周兰英,钟生东.成膜参数对TiN-MoS2/Ti复合薄膜摩擦学性能的影响[J].兵工学报,2002(03):395-398.
[13] 荆阳;周兰英;庞思勤.月球探测机器人关节固体润滑关键技术的新进展[A].北京,2001:1.
[14] 张伟,徐滨士,梁志杰,谢凤宽,谭俊.电刷镀含纳米粉复合镀层结构和磨损性能[J].装甲兵工程学院学报,2000(03):30-33,68.
[15] H. Keune;W. Lacom;F. Rossi;E. Stoffels;W. W. Stoffels;G. Wahl .Formation and deposition of MoS_2-nanoparticles[J].Journal de Physique.IV,2000(2):19-26.
[16] Stoffels E;Stoffels W W;Ceccone G et al.MoS2 nanoparticle formation in a low pressure environment[J].Journal of Applied Physics,1999,86(06):3442.
[17] Chhowalla M;Amaratunga A J.Thin film of fullerene-like MoS2 nanoparticles with ultra-low friction antiwear[J].NATURE,2000(407):164.
[18] RAPOPORT L.;BILIK YU.;FELDMAN Y.;HOMYONFER M.;COHEN S. R.;TENNE R. .HOLLOW NANOPARTICLES OF WS2 AS POTENTIAL SOLID-STATE LUBRICANTS[J].Nature,1997(6635):791-793.
[19] Rapoport L;Lvovsky M;Lapsker I et al.Friction and wear of bronze powder composites including fullerene-like WS2 nanoparticles[J].Wear,2001,249(1/2):150.
[20] Rapoport L;Lvovsky M;Lapsker I et al.Slow release of fullerene-like WS2 nanoparticles from Fe-Ni-graphite matrix:a self-lubricating nanocomposite[J].Nano Letters,2001,1(03):137.
[21] Rapoport L.;Homyonfer M.;Cohen H.;Sloan J.;Hutchison J.L.;Tenne R.;Feldman Y. .Inorganic fullerene-like material as additives to lubricants: Structure-function relationship[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,1999(2):975-982.
[22] Voevodin A A;O'Neill J P;Zabinski J S .Nanocomposite tribological coatings for aerospace application[J].Surface and Coatings Technology,1999,116-119:36.
[23] Goller R;Torri P;Baker M A .The deposition of low friction TiN-MoSx coatings by a combined arc evaporation and magnetron sputtering process[J].Surface and Coatings Technology,1999,120/121:453.
[24] Golan Y.;Homyonfer M.;Feldman Y.;Tenne R.;Israelachvili J.;Drummond C. .Microtribology and direct force measurement of WS2 nested fullerene-like nanostructures[J].Advanced Materials,1999(11):934-937.
[25] Golan Y;Drummond C;Israelachvili J et al.In situ imaging of shearing contacts in the surface forces apparatus[J].Wear,2000,245:190.
[26] 沃恒洲,胡坤宏,胡献国.纳米二硫化钼作为机械油添加剂的摩擦学特性研究[J].摩擦学学报,2004(01):33-37.
[27] 赵修臣,刘颖,余智勇.纳米粒子作润滑油添加剂的研究与展望[J].润滑与密封,2002(06):80-82,85.
[28] Kenneth Holmberg .Coating tribology: a concept, critical aspects and future direction[J].Thin Solid Films,1994,253(1/2):173.
[29] Matthews A.;Holmberg K.;Ronkainen H.;Leyland A. .Design aspects for advanced tribological surface coatings[J].Surface & Coatings Technology,1998(1/3):1-6.
[30] 陈云霞,王博,刘维民.纳米PbS-TiO2复合薄膜的制备和摩擦学性能[J].过程工程学报,2002(04):365-369.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%