首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Surface texture changes followed-up in real time during the initial wear transient of dry sliding of steel against several metals using laser light scattering
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Surface texture changes followed-up in real time during the initial wear transient of dry sliding of steel against several metals using laser light scattering

机译:在使用激光散射使钢相对于多种金属进行干式滑动的初始磨损瞬变过程中,实时实时跟踪表面纹理变化

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摘要

Previous experimental work has shown the possibility of applying laser light scattering (LLS) methods to study the evolution of surface topography during the initial transient period in a wear experiment on a pin-on disk apparatus. A specific set up of a laser source, pointing towards anywhere on the wear-track of the pin on the disk, and a detector to sense the light scattered from the surface, located off the plane of incidence, providing an LLS signal whose changes are related to the surface damage due to the pass of the pin as it runs over the disk. When applied to monitor the surface changes during the running-in stage, the LLS signal shows a characteristic signature for each material and wear regimen. While typical surface analysis using the pin-on-disk apparatus is done ex situ, after wear took place, our experimental setup is designed to detect the minute changes suffered by the surface of the disk due to mechanical contact with the pin, showing the onset stages of wear during the initial transient, in real time. Ex situ analysis using optical microscopy (OM) and surface roughness measurements provides an insight as to the events leading to the changes in surface texture observed in LLS.
机译:以前的实验工作表明,在销钉磁盘设备上进行的磨损实验中,可以应用激光散射(LLS)方法研究表面形貌在初始瞬态期间的演变。特定的激光源设置指向磁盘销钉磨损轨迹上的任意位置,检测器可检测从入射平面以外的表面散射的光,从而提供LLS信号,其变化为与由于销钉在磁盘上通过而通过而造成的表面损坏有关。当在磨合阶段用于监测表面变化时,LLS信号显示每种材料和磨损方案的特征性特征。尽管使用销钉盘式设备进行典型的表面分析是在非现场完成的,但是在发生磨损之后,我们的实验装置旨在检测由于磁盘与销钉的机械接触而导致的磁盘表面的微小变化,从而显示出发生的原因。在初始瞬态过程中实时进行磨损的各个阶段。使用光学显微镜(OM)和表面粗糙度测量进行的异位分析可以洞悉导致LLS中观察到的表面纹理变化的事件。

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