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首页> 外文期刊>Tribology Letters >Effect of Surface Oxide Layer of Steel on the Tribological Characteristics of Load-bearing Additives for Multiply-Alkylated Cyclopentane Oil under High Vacuum
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Effect of Surface Oxide Layer of Steel on the Tribological Characteristics of Load-bearing Additives for Multiply-Alkylated Cyclopentane Oil under High Vacuum

机译:钢的表面氧化物层对高真空下多烷基化环戊烷油承重添加剂的摩擦学特性的影响

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摘要

The tribological performance of two types of additives—alkylated phenyl phosphate and lead naphthenate—dissolved in multiply-alkylated cyclopentane was evaluated under a high vacuum using two types of ball-on-disk tribometers: a reciprocating motion tribometer under mild loading conditions and a unidirectional rotating motion tribometer under heavy loading conditions. A ball and a flat disk made of SUS440C stainless steel were used as specimens for both tribometers. The surface of the as-received flat disk specimen was covered with a thick (>40 nm) oxide layer. For the examination of the effect of the surface oxide layer on the tribological performance of the liquid lubricants under a high vacuum, another specimen with an oxide layer (approx. 4 nm thick) was prepared. The alkylated phenyl phosphate additive showed better lubrication performance with the specimen with the thicker oxide layer, but the lead naphthenate additive showed superior performance with the thinner oxide layer specimen. It is also shown that these opposite tribological characteristics are explained by the hard and soft acids and bases principle.
机译:在高真空下,使用两种类型的圆盘球式摩擦计评估了溶解在多烷基化环戊烷中的两种添加剂(烷基化的磷酸苯酯和环烷酸铅)的摩擦学性能:往复运动摩擦计在轻载条件下和单向重载条件下的旋转摩擦摩擦计。两种摩擦计的样品均使用SUS440C不锈钢制成的球和平板。接收到的平板样品的表面覆盖有厚的(> 40 nm)氧化层。为了在高真空下检查表面氧化物层对液体润滑剂的摩擦学性能的影响,准备了另一个带有氧化物层(约4 nm厚)的试样。烷基化磷酸苯酯添加剂在氧化层较厚的样品上显示出更好的润滑性能,而环烷酸铅添加剂在氧化层较薄的样品上显示出更好的润滑性能。还表明,这些相反的摩擦学特性可以通过硬酸和软酸和碱原理来解释。

著录项

  • 来源
    《Tribology Letters 》 |2013年第1期| 115-125| 共11页
  • 作者单位

    Department of Chemical Engineering Graduate School of Science and Engineering Tokyo Institute of Technology">(1);

    Department of Chemical Engineering Graduate School of Science and Engineering Tokyo Institute of Technology">(1);

    Department of Chemical Engineering Graduate School of Science and Engineering Tokyo Institute of Technology">(1);

    Department of Chemical Engineering Graduate School of Science and Engineering Tokyo Institute of Technology">(1);

    Department of Chemical Engineering Graduate School of Science and Engineering Tokyo Institute of Technology">(1);

    Aerospace Research and Development Directorate Japan Aerospace Exploration Agency">(2);

    Aerospace Research and Development Directorate Japan Aerospace Exploration Agency">(3);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Liquid lubrication; Boundary lubrication; Load-bearing additive; High vacuum; Tribochemistry; HSAB principle;

    机译:液体润滑;边界润滑;承重添加剂;高真空;摩擦化学HSAB原则;

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