Studying anti-friction and anti-wear properties of marine lubricants containing layered friction modifier

V. A. Chanchikov, I. N. Guzhvenko, A. I. Andreev, Mariya Sergeevna Pryamukhina, Marina A. Shulimova
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Abstract

The paper highlights the results of anti-friction and anti-wear tests of samples of lubricating media containing a layered friction modifier - molybdenum diselenide. The main variable test conditions are the load on the test samples, volume concentration of the layered friction modifier in the lubricating oil, preliminary storage time of the lubricating composition before testing. The main evaluation criteria are the mass wear of samples, wear intensity, friction coefficient. Each of the eight test cycles was implemented on a tribotechnical installation of an original design using a cylindrical contact type. The resource indicators transferred from the model conditions of the tests to the real tribological unit “ring-cylinder” of a marine diesel engine 6ChSP 18/22 were evaluated. According to the results of tribological studies, the effect of increasing the load on the model friction unit of the installation, containing a cylindrical wear pair of alloyed gray cast iron, was revealed, as a result of which the mass wear of the annular movable sample increases, and the resource transferred to the real tribological interface of the marine diesel engine “ring-cylinder” decreases in 1.13-1.23 times. The greatest influence on the wear indicators of model samples and the resource transferred to the real “ring-cylinder” interface of a marine diesel engine is the time of preliminary storage of a lubricant composition containing molybdenum diselenide as an additive. It has been proven that the deterioration of anti-friction properties (an increase in the average surface temperature of a segment sample and the friction force) is largely affected by a decrease in the volume concentration of an anti-wear additive in the oil. It has been found out that serious changes in the indicated estimated parameters are valid for the smallest loading step on the samples. General recommendations are formulated for the use of antiwear additives considered in the studies. It has been proved that storing lubricating compositions with additives is possible for a period of no longer than 3-4 days at given volume concentrations in the range of 0.5-1.0%, since if this period is exceeded by 25-40%, the diesel CPG resource may be halved with increased wear of its piston rings and cylinder liners.
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研究含层状摩擦改性剂的船用润滑油的减摩抗磨性能
本文重点介绍了含层状摩擦改进剂二硒化钼的润滑介质样品的抗摩擦和抗磨损试验结果。主要的可变试验条件是试样所受载荷、润滑油中分层摩擦改进剂的体积浓度、试验前润滑成分的初步储存时间。主要评价标准是试样的质量磨损、磨损强度、摩擦系数。八个测试周期中的每一个都是在原始设计的使用圆柱形接触类型的摩擦技术安装上实施的。对从试验模型条件转移到船用柴油机6ChSP 18/22实际摩擦单元“环缸”的资源指标进行了评价。根据摩擦学研究结果,揭示了载荷增加对含合金灰口铸铁圆柱磨损副的装置模型摩擦单元的影响,使环形可动试样的质量磨损增大,传递到船用柴油机“环缸”实际摩擦学界面的资源减少了1.13 ~ 1.23倍。以二硒化钼为添加剂的润滑油组合物的初存时间对模型样品的磨损指标和转移到实际船用柴油机“环-缸”界面的资源影响最大。事实证明,减摩性能的恶化(试样的平均表面温度和摩擦力的增加)在很大程度上受减磨添加剂在油中的体积浓度的降低的影响。研究发现,在最小的加载步长下,所指示的估计参数的严重变化是有效的。对研究中所考虑的抗磨添加剂的使用提出了一般建议。已经证明,在给定的体积浓度为0.5-1.0%的情况下,含添加剂的润滑组合物可以储存不超过3-4天,因为如果超过25-40%,柴油的CPG资源可能会减少一半,同时活塞环和气缸套的磨损会增加。
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