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聚醚的制备及摩擦特性研究 被引量:3

Preparation and Friction Characteristics of Polyether
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摘要 制备了水溶性、水不溶和油溶性三类聚醚,通过多功能摩擦试验机对这三类聚醚的抗磨减摩特性进行了研究,结果表明,在低压力条件下,黏度决定了聚醚的抗磨与减摩性能;在高压力下,黏度与极性的大小共同决定了聚醚的摩擦特性,同时摩擦结果通过扫描电镜和元素分析得到了验证。 Friction - reducing and antiwear properties of three kinds of polyethers which include water - soluble, water - insoluble and oil- soluble were evaluated by multifunctional friction test machine. The results showed that, under low pressure conditions, the viscosity determines antiwear and antifriction properties of the polyether; under high pressure, viscosity and polarity both determine the frictional characteristics of the polyether. It might be verified from the morphologies of the worn scars of steel disk by scanning electron microscopy (SEM) and elemental analysis (EDS).
出处 《润滑油》 CAS 2013年第1期19-22,共4页 Lubricating Oil
关键词 制备 聚醚 摩擦 润滑 preparation polyether friction lubrication
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参考文献5

  • 1Lawford S. ' Polyalkylene glycols' , Synthetics, Mineral Oils and Biobased l.ubrivants [ M ]. CRC Press, 2006: 119 -138.
  • 2Matlock P L, Clinton N A. Polyalkylene Glycols[ M ]. Mar- cel Dekker Inc, 1993 : 101 - 123.
  • 3Nieh E C Y. Oil Soluble Polyethers: US, 5494595 [P]. 1996.
  • 4Hoglund E. Influence of Luhrieant Properties on Elasto- hydrodynamic, Lubrieation [ J ]. Wear, 1999, 232:176 -184.
  • 5文小红,王学业.二烷基二硫代磷酸锌(ZDDP)的成键特征与润滑机理的理论研究[J].湘潭大学自然科学学报,2005,27(3):77-80. 被引量:8

二级参考文献14

  • 1李新芳,王学业,文小红,龙清平,刘万强,谭援强,李建军.有机二硫化物润滑添加剂抗磨极压性能的密度泛函理论研究[J].Chinese Journal of Structural Chemistry,2004,23(9):1044-1050. 被引量:9
  • 2Coy R C, Jones R B. The thermal degradation and EP performance of Zinc dialkydithiophophate additives in white oil[J]. ASLE Trans 1979; 24(1): 77-90
  • 3Spedding H, Watkins R C. The antiwear mechanisms of ZDDPs-Part I[J]. Tribology International, 1982; 15(1): 9-12.
  • 4Fuller M, Yin Z, Kasrai M,et al. Chemical characterization of tribochemical and thermal films generated from neutral and basic ZDDPs using X-ray absorption spectroscopy[J]. Tribology International, 1997; 30(4): 305-315.
  • 5Watkins R C. The antiwear mechanism of ZDDPs-Part II[J]. Tribology International, 1982; 15(1): 13-15.
  • 6Wan Y, Cao L, Xue Q. Friction and wear characteristics of ZDDP in the sliding of steel against aluminium alloy[J]. Tribology International, 1998; 30(10): 767-72.
  • 7Rhodes K L, Stair P C. The surface chemistry of Zinc dialkydithiophophate, an anti-wear additive, on oxidized iron and steel foils[J]. J Vac Sci Technol, 1988; A6: 971-976.
  • 8Hosonuma K, Yoshida K,Matsunaga A.The decomposition products of Zinc dialkydithiophophate in an engine and their interaction with diesel soot[J]. Wear,1985; 103: 297-309.
  • 9Armstrong D R, Ferrari E S, Roberts K J,et al. An investigation into the molecular stability of Zinc dialkydithiophosphates (ZDDPs) in relation to their use as anti-wear and anti-corrosion additives in lubricating oils[J]. Wear,1997; 208: 138-146.
  • 10Yuanqiang Tan, Weijiu Huang, Xueye Wang. Molecular orbital indexes criteria for friction modifiers in boundary lubrication[J]. Tribology International, 2002; 35: 381-384.

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