欢迎登录材料期刊网

材料期刊网

高级检索

综述了近年来国内外液晶摩擦学的研究进展\.比较了不同小分子液晶润滑剂或添加剂的润滑机理和减摩抗磨性能的差异;总结和分析了大分子液晶微观和宏观增强复合材料的摩擦磨损机理和性能;并对液晶摩擦学今后的研究和发展方向提出了展望.

参考文献

[1] Barchans G P[J].Soviet Mathematics Doklady,1981,26:524-525.
[2] Tichy J A .Tichy J A[J].Tribology Transactions,1990,33(03):363-370.
[3] Rhim Y;Tichy J A .[J].Journal of Tribology,1991,113:492-498.
[4] Bermudez M D;Martinez N G;Carrion Vilches F J .[J].Wear,1997,212:188-194.
[5] Friberg S E;Ward A J;Gunsel S.[A].,1990:101-112.
[6] 吴玉松,董炎明,邱星屏.液晶润滑的研究进展[J].化学进展,2001(05):343-350.
[7] Moris;Iwata H .[J].Tribology International,1996,29:35-39.
[8] 姚俊兵,王清亮,李银凤,温诗铸.液晶化合物的摩擦学性能[J].润滑与密封,2000(01):57-60.
[9] Moucharafieh N;Friberg S E .[J].MOLECULAR CRYSTALS AND LIQUID CRYSTALS,1979,49:231-236.
[10] Friberg S E;Ma Z .[J].Advances in Colloid and Interface Science,1992,41:45-56.
[11] Friberg S E;Ward A J;Gunsel S.[A].,1990:101-111.
[12] Kumar K;Shah D O .[A].,1990,441:91-100.
[13] Barid D G .Rheological properties of liquid crystalline solutions of poly(p-phenylene terephthalamide) in sulfuric acid[J].Journal of Rheumatology,1980(24):465-470.
[14] F E Lockwood et al.[J].ASLE Transactions,1987,30:539-548.
[15] S Gunsel et al.[J].Lubrication Science,1992,4(03):191-199.
[16] Fuller S;Li Y;Tiddy G J T et al.[J].Langmuir,1995,11:1980-1983.
[17] S. Mori;H. Iwata .Relationship between tribological performance of liquid crystals and their molecular structure[J].Tribology International,1996(1):35-39.
[18] J.Cognard.[A].,1990:1-48.
[19] Morishita S;Nakano K;Kimura Y .Eletroviscous effect of nematic liquid crystal[J].Tribology International,1993,26(06):399-403.
[20] Jin Jei Wu;Chih Ming Wang .[J].Physics Letters,1997,A232:149-154.
[21] Y Kimura et al.[J].Wear,1994,175:143-149.
[22] B I Kupchinov et al.[J].Wear,1994,171:7-12.
[23] [J].化工设备设计,1999,36(03):48.
[24] Kiss G .[J].Engineering Sciences,1987,27:410.
[25] 唐炜,朱宝亮,刘家浚,赵安赤.液晶微纤原位增强PTFE复合材料抗磨性能与磨损机理[J].摩擦学学报,2000(01):10-13.
[26] 赵安赤;黄淑辉 .[J].塑料,1997,26(01):8-15.
[27] 马保吉,朱均,高嵩.芳纶纤维增强摩擦材料的摩擦学性能研究[J].摩擦学学报,2000(04):260-263.
[28] 刘旭军,李同生,杨生荣,何雪,刘维民.芳纶纤维织物摩擦磨损性能的研究[J].摩擦学学报,1999(01):23-27.
[29] Takahisa Kato.The wear of aramid fiber reinforced brake pads[A].London:STLE,1993:1-7.
[30] Gopal P .Hybrid phenolic friction composites containing Kevlar pulp[J].Wear,1996,193:199-206.
[31] Briscoe B J.Aramid fiber friction:a replacement for asbestosin high friction materials[A].New York:SAM International,1993:251-265.
[32] Lai-Gui Yu;Sheng-Rong Yang .Investigation of the transfer film characteristics and tribochemical changes of Kevlar fiber reinforced polyphenylene sulfide composites in sliding against a tool steel counterface[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2002(1/2):98-103.
[33] Gopal P .Hybrid phenolic friction composites containing Kevlar pulp[J].Wear,1996,193:199-206.
[34] Kato T.The wear of aramid fiber reinforced brake pads[A].London:STLE:199.
[35] Briscoe B J.Aramid fiber friction:a replacement for asbestos in high friction materials[A].New York:ASM international,1993
[36] 马保吉,朱均.芳纶纤维增强酚醛树脂摩擦材料的磨损机理研究[J].摩擦学学报,2001(03):205-209.
[37] 刘旭军,李同生,杨生荣,何雪,刘维民.芳纶纤维织物摩擦磨损性能的研究[J].摩擦学学报,1999(01):23-27.
[38] Bolvari A;Glenn S;JANSSEN R et al.Wear and friction of aramid fiber and ploytetrafluoroethylene filled composites[J].WEAR,1997,202-204:697-702.
[39] Wise K D.Micro mechanical sensors actuators and systems[M].New York,1991:1-14.
[40] 丁衡高.微系统与微米/纳米技术及其发展[C].《微米/纳米科学与技术》第5卷第1期,2000:1-6.
[41] G Friedel;Ann Phys .XV1119 series 206-356[Z].,1992.
[42] 松本正一;王殿福.液晶的最新技术[M].北京:化学工业出版社,1991:69-80.
[43] EChinllini E;Galli G.[A].,1993:51.
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%