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Zinc dialkyl dithiophosphate antiwear tribofilm and its effect on the topography evolution of surfaces: A numerical and experimental study

机译:二烷基二硫代磷酸锌抗磨摩擦膜及其对表面形貌演变的影响:数值和实验研究

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摘要

A modelling framework has recently been developed which considers tribochemistry in deterministic contact mechanics simulations in boundary lubrication. One of the capabilities of the model is predicting the evolution of surface roughness with respect to the effect of tribochemistry. The surface roughness affects the behaviour of tribologically loaded contacts and is therefore of great importance for designers of machine elements in order to predict various surface damage modes (e.g. micropitting or scuffing) and to design more efficient tribosystems. The contact model considers plastic deformation of the surfaces and employs a modified localized version of Archard’s wear equation at the asperity scale that accounts for the thickness of the tribofilm. The evolution of surface topography was calculated based on the model for a rolling/sliding contact and the predictions were validated against experimental results. The experiments were carried out using a Micropitting Rig (MPR) and the topography measurements were conducted using White Light Interferometry. Numerically, it is shown that growth of the ZDDP tribofilm on the contacting asperities affects the topography evolution of the surfaces. Scanning Electron Microscopy (SEM) and X-ray Photoelectron Spectroscopy (XPS) have been employed to confirm experimentally the presence of the tribofilm and its chemistry. The effects of the contact load and surface hardnesses on the evolution of surface topography have also been examined in the present work.
机译:最近开发了一种建模框架,该模型在边界润滑的确定性接触力学模拟中考虑了摩擦化学。该模型的功能之一是根据摩擦化学的作用预测表面粗糙度的演变。表面粗糙度影响受摩擦载荷的接触的行为,因此对于机械元件的设计者而言至关重要,以便预测各种表面损伤模式(例如微点蚀或刮擦)并设计更有效的摩擦系统。接触模型考虑了表面的塑性变形,并在粗糙尺度上采用了Archard磨损方程式的局部修正版本,该版本考虑了摩擦膜的厚度。基于模型的滚动/滑动接触计算表面形貌的演变,并根据实验结果验证了预测结果。使用Micropitting Rig(MPR)进行实验,并使用白光干涉仪进行形貌测量。从数值上显示,ZDDP摩擦膜在接触凹凸上的生长会影响表面的形貌演变。扫描电子显微镜(SEM)和X射线光电子能谱(XPS)已用于通过实验确定摩擦膜的存在及其化学性质。接触载荷和表面硬度对表面形貌演变的影响也已在本工作中进行了研究。

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