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High temperature lubrication of rolling contacts with lubricants delivered from the vapor phase and as oil-mists.

机译:滚动接触的高温润滑,使用的是汽相和油雾形式的润滑剂。

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摘要

The ability to lubricate gas turbine bearings at temperatures beyond the limits of liquid lubrication has been a research objective for more than four decades. This research investigated several classes of synthetic lubricants for potential use as vapor phase lubricants in gas turbines. Specific lubricants investigated were: a tertiary-butyl phenyl phosphate (TBPP); a cyclophosphazene (X-1P); a 2 cSt polyalphaolefin blended with TBPP; a polyphenylether (5P4E); and a pefluoroalkylether (Z). Preliminary tests were conducted in a ball-on-rod tester modified for high temperature operation. The lubricants containing phosphorus demonstrated the best high temperature performance, with sustained operation at temperatures above {dollar}600spcirc{dollar}C in an air environment.; After test, bearing surfaces were analyzed using {dollar}mu{dollar}-FTIR, Raman spectroscopy, SEM, EDS, and AES. Condensed phosphates and graphite were identified on the bearing surfaces lubricated with the TBPP and X-1P vapor. Abrasive iron oxides with significantly less graphite were identified on surfaces lubricated with 5P4E vapor. The difference in deposition films is attributed to the phosphate structure formed by the organophosphorus lubricants.; Additionally, AES depth profiles indicated that mass diffusion was involved in the formation of vapor deposition films for several of the lubricants tested. Diffusion coefficients of the order of {dollar}rm 10sp{lcub}-14{rcub} cmsp2/s{dollar} were detected on T15 bearing steel at bearing temperatures of {dollar}370spcirc{dollar}C when lubricated by TBPP vapor. This value is six orders of magnitude larger than the self-diffusion coefficient for BCC iron at {dollar}370spcirc{dollar}C. The difference is attributed to subsurface stress gradients and chemical reactions with vapor lubricants.; The candidate lubricants were also evaluated in full-scale bearings at gas turbine engine conditions. The TBPP lubricant, T15 bearing steel, {dollar}rm Sisb3Nsb4{dollar} rolling elements, C-C composite bearing cages, and oil-mist delivery provided the best performance, demonstrating sustained operation at temperatures up to {dollar}450spcirc{dollar}C, stress loads of 1.8 GPa, and bearing speeds of 1.3 MDN. These conditions represent the limitations of the bearing tester, not the technology itself. The use of C-C bearing cages and oil-mist delivery were important for thermal management in high speed bearings.
机译:在超过液体润滑极限的温度下润滑燃气轮机轴承的能力已经超过四十年了。这项研究调查了几类可能用作燃气轮机汽相润滑剂的合成润滑剂。研究的特定润滑剂为:叔丁基苯基磷酸酯(TBPP);环磷腈(X-1P); 2 cSt聚α-烯烃与TBPP混合;聚苯醚(5P4E);和全氟烷基醚(Z)。初步测试是在为高温操作改装的球杆测试仪上进行的。含磷的润滑剂表现出最佳的高温性能,并在空气环境中在高于600spcirc {dol} C的温度下持续运行。在测试之后,使用{mu} {FT} -FTIR,拉曼光谱,SEM,EDS和AES分析轴承表面。在用TBPP和X-1P蒸气润滑的轴承表面上发现了冷凝的磷酸盐和石墨。在用5P4E蒸气润滑的表面上发现了石墨含量明显减少的磨料氧化铁。沉积膜的差异归因于有机磷润滑剂形成的磷酸盐结构。此外,AES深度分布表明,对于某些测试的润滑剂,质量扩散参与了气相沉积膜的形成。当用TBPP蒸气润滑时,在轴承温度为370spcirc {dollar}的T15轴承钢上,检测到{rm} 10sp {lcub} -14 {rcub} cmsp2 / s {dollar}的扩散系数。该值比{CC}铁在370spcirc {C}下的BCC铁的自扩散系数大六个数量级。差异归因于地下应力梯度和与蒸气润滑剂的化学反应。在燃气轮机条件下,还在全尺寸轴承中对候选润滑剂进行了评估。 TBPP润滑剂,T15轴承钢,{rm} rm Sisb3Nsb4 {dollar}滚动元件,CC复合轴承保持架和油雾输送性能最佳,证明了在最高温度达450spcirc {dollar}的温度下仍可持续运行,应力载荷为1.8 GPa,轴承速度为1.3 MDN。这些条件代表了轴承测试仪的局限性,而不是技术本身的局限性。使用C-C轴承保持架和油雾输送对于高速轴承的热管理非常重要。

著录项

  • 作者

    Forster, Nelson Howell.;

  • 作者单位

    University of Dayton.;

  • 授予单位 University of Dayton.;
  • 学科 Engineering Mechanical.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 243 p.
  • 总页数 243
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;工程材料学;
  • 关键词

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