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Modification of working conditions for a friction pair with an additive added to engine oil during operation

机译:在运行过程中,通过在发动机机油中添加添加剂来改变摩擦副的工作条件

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Purpose - The purpose of this paper is to present the results of research into using an additive to SAE 15W/40 engine oil during operation and its influence on lubricating properties (normalised tests) on weld point Pz, non-seizure load Pn, load wear index Ih and on seizure load Pt. The friction pair consisted of a group of four balls and the tested lubricant. Moreover, the author tested the influence of an additive to engine oil (non-normalised tests) on tribological properties, including friction force, wear and the temperature of friction area for the C45 steel/210Cr12 steel friction joint. She also determined the influence of an additive to engine oil on the formation of the operating surface layer. The research results helped to build the model of the boundary layer that was formed as a result of adding an additive to engine oil. Design/methodology/approach - The lubricant properties of engine oil and engine oil to which an additive was added during operation were determined according to PN-76/C-04147. The following are the indexes of lubricant properties: weld point Pz, load wear index Ih, non-seizure load Pn, seizure load and average scar diameter. The Pz, Pn and Ih indexes were determined at abruptly increasing load to the moment of welding of the friction pair. The Pt index was determined at the increasing load of the friction pair from 0 to 800 daN at the speed of 408.8 N/s. The tests of tribological properties (friction force, wear and the temperature of friction area) were conducted for the C45/210 Cr12 friction pair in the presence of a lubricant and a lubricant with an additive. Findings - The modification of SAE 15W/40 engine oil with the additive added during operation resulted in improved indexes of lubricant properties Pz, Pn, Ih and Pt and average scar diameter. The boundary layer for the modified oil breaks after a longer time and at lesser friction force. The modification of the engine oil reduced the wear of the friction pair. After the friction process, element composition in the surface layer of the wear trace and its distribution were determined in relation to applied lubricants. A significant amount of sulphur, phosphorus and oxygen, as well as an insignificant amount of copper, was observed in the wear trace after the friction process in the presence of the lubricant medium. The distribution of elements in the wear trace when the engine oil with the additive was used is steady in the wear trace and outside it. Some sulphur, phosphorus and chlorine were found in the wear trace. Originality/value - The results of tests on tribological properties (non-normalised tests) confirmed the positive affect of the additive to engine oil on lubricant properties (normalised tests). The modification of the engine oil caused reduced friction force and the reduced wear of the friction pair. The reduction of friction force and wear was the result of the formation of the surface of a greater amplitude density of unevenness tops in the friction process. Moreover, the operating surface layer, created in the friction process when the additive was added to the engine oil, had greater load participation at 50 per cent C. This operational surface layer improved tribological properties, i.e. it reduced value of friction force and wear. The test results were used to build a model of the boundary layer created as a result of the additive added to engine oil.
机译:目的-本文的目的是介绍在运行期间使用SAE 15W / 40机油添加剂的研究结果及其对焊接点Pz,非咬合载荷Pn,载荷磨损的润滑性能的影响(归一化测试)。指数Ih和癫痫发作负荷Pt。摩擦副由一组四个滚珠和经过测试的润滑剂组成。此外,作者测试了添加剂对机油的影响(非标准化测试)对摩擦学性能的影响,包括C45钢/ 210Cr12钢摩擦接头的摩擦力,磨损和摩擦区域温度。她还确定了添加剂对机油的影响,对工作表面层的形成。研究结果有助于建立边界层的模型,该边界层是通过在发动机油中添加添加剂而形成的。设计/方法/方法-根据PN-76 / C-04147确定运行时机油和添加了添加剂的机油的润滑性能。以下是润滑剂性能的指标:焊接点Pz,负荷磨损指数Ih,非咬合负荷Pn,咬合负荷和平均疤痕直径。 Pz,Pn和Ih指数是在摩擦副的焊接瞬间突然增加的载荷下确定的。 Pt指数是在408.8 N / s的速度下,从0到800 daN的摩擦副载荷增加时确定的。 C45 / 210 Cr12摩擦副在润滑剂和含添加剂的润滑剂的存在下进行了摩擦学性能(摩擦力,磨损和摩擦区域温度)测试。发现-在运行过程中添加添加剂对SAE 15W / 40机油进行了改性,从而改善了润滑剂性能Pz,Pn,Ih和Pt的指数以及平均疤痕直径。改性油的边界层在较长的时间和较小的摩擦力作用下会破裂。机油的改性减少了摩擦副的磨损。在摩擦过程之后,确定磨损痕迹表层中的元素组成及其分布与所用润滑剂的关系。在存在润滑剂介质的情况下,在摩擦过程之后的磨损痕迹中观察到大量的硫,磷和氧,以及少量的铜。当使用含添加剂的机油时,磨损痕迹中元素的分布在磨损痕迹中和外部均稳定。在磨损痕迹中发现了一些硫,磷和氯。原创性/价值-摩擦学性能测试结果(非规范化测试)证实了机油添加剂对润滑剂性能的积极影响(规范化测试)。机油的改性导致减小的摩擦力和减小的摩擦副磨损。摩擦力和磨损的减少是在摩擦过程中形成的不平坦顶部的振幅密度更大的表面的结果。此外,当将添加剂添加到机油中时在摩擦过程中产生的工作表面层在50%的温度下具有更大的负载参与度。该工作表面层改善了摩擦学性能,即降低了摩擦力和磨损值。测试结果用于建立边界层的模型,该边界层是由于将添加剂添加到机油中而产生的。

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