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Tribochemical wear of rail steels lubricated with synthetic ester-based model lubricants

机译:用合成酯基模型润滑剂润滑的轨道钢的摩擦化学磨损

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摘要

Headchecks are a common type of damage in heavily loaded curved freight tracks. This paper deals with synthetic ester formulations' ability to prevent damage caused by headchecks through mild tribochemical wear, An experimental study pertaining to wear and friction of two rail steels lubricated by two synthetic ester base fluids, TMP-oleate and TMP- C{sub}8- C{sub}10, has been carried out. Six different free fatty acids were used in this study to act as performance additives Three of the fatty acids were mono-acids with different, straight, carbon chain lengths (stearic acid C{sub}18, decanoic acid C{sub}10 and octanoic acid C{sub}8), one was a mono-unsatu-rated straight-chain fatty acid (oleic acid C{sub}(18:1)) while two were dibasic acids with intermediate carbon chain length (C{sub}9 and C{sub}10). Each fatty acid was blended with either ester, one at a time The tests were carried out by using a high frequency reciprocating friction and wear test machine. In these tests, the gage face/wheel flange contact was simulated, and all tests were conducted in the boundary lubrication regime. An initial contact pressure of 316 MPa and a maximum sliding speed of 0.11 m/s were employed during the tests. The tests showed a wide range of wear rates, as well as different surface features depending on the interactions between synthetic esters, fatty acids and steel The use of stearic and azaleic acid in lubricating rail steels results in very smooth surfaces with significant differences in their wear rates.
机译:头部检查是重载弯曲货运轨道中的常见损坏类型。本文探讨了合成酯配方预防由轻度摩擦化学磨损引起的头部检查所造成的损害的能力,一项涉及两种合成酯基础油,TMP-油酸酯和TMP-C {sub}润滑的两种钢轨的磨损和摩擦的实验研究。已执行8- C {sub} 10。在这项研究中,使用了六种不同的游离脂肪酸作为性能添加剂。其中三种脂肪酸是具有不同直链碳链长度的单酸(硬脂酸C {sub} 18,癸酸C {sub} 10和辛酸酸C {sub} 8),一个是单不饱和度的直链脂肪酸(油酸C {sub}(18:1)),而两个是具有中等碳链长度的二元酸(C {sub} 9和C {sub} 10)。将每种脂肪酸与一种酯一次混合一次。使用高频往复摩擦磨损试验机进行测试。在这些测试中,模拟了量规面/轮缘的接触,并且所有测试均在边界润滑状态下进行。在测试过程中,采用了316 MPa的初始接触压力和0.11 m / s的最大滑动速度。测试表明,广泛的磨损率以及取决于合成酯,脂肪酸和钢之间相互作用的不同表面特征。在润滑钢轨钢中使用硬脂酸和氮杂酸会产生非常光滑的表面,且其磨损差异很大费率。

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