Modelling lubricating oil wear using fuzzy logic

Daria Skonieczna, P. Szczyglak, M. Lemecha
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引用次数: 0

Abstract

The content of this article presents research on used and fresh engine oils. The aim of the experiment is to preliminarily develop a method for assessing the condition of engine oil subjected to service. A four-ball tester was used to compare the lubricating properties of the engine oil as one component of the tribosystem under laboratory conditions. The method used to determine the mashing load consisted of subjecting the kinematic node to a linearly increasing load with a build-up rate of 409 N·s-1 under operating conditions of approximately 20°C and a spindle speed of 500 rpm. The presented article is a continuation of the consideration of the lubricating properties of engine oils subjected to operation. The tests carried out made it possible to observe that fresh oils are characterised by their ability to carry higher loads in relation to oils subjected to service. This is evidenced by the obtained values of scuffing loads, which have a higher value for fresh oils (The average percentage increase in scuffing load for fresh oils was 62.23%). Comparing the friction torque characteristics with each other, it can be seen that the values of maximum friction torque are also higher for the fresh oils group. The modelling process made it possible to characterise changes in the tribological properties of the lubricating oil being used. In the future, the described model will be extended to include further input parameters (viscosity, contaminant content, fractional composition, etc.), which will allow a multi-parametric assessment of lubricating oil wear.
利用模糊逻辑建立润滑油磨损模型
这篇文章的内容介绍了对旧机油和新机油的研究。实验的目的是初步开发一种方法,用于评估使用中的发动机机油的状况。在实验室条件下,使用四球测试仪比较作为摩擦系统组成部分之一的发动机机油的润滑性能。用于确定碾压负荷的方法包括在约 20°C 和主轴转速为 500 rpm 的工作条件下,让运动节点承受线性增加的负荷,增加速率为 409 N-s-1。本文是对运行中的发动机机油润滑性能研究的延续。通过所进行的测试,我们可以发现新机油与使用中的机油相比,具有承载更大负荷的能力。新机油的摩擦载荷值较高,这一点可以从获得的摩擦载荷值中得到证明(新机油的摩擦载荷平均增加百分比为 62.23%)。将摩擦扭矩特性相互比较,可以看出新机油组的最大摩擦扭矩值也更高。今后,所述模型将扩展到更多输入参数(粘度、杂质含量、组分比例等),从而对润滑油磨损进行多参数评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
30
审稿时长
6 weeks
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