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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >In-situ fast and long observation system for friction surfaces during scuffing of steel
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In-situ fast and long observation system for friction surfaces during scuffing of steel

机译:钢磨损过程中摩擦表面的原位快速和长观测系统

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摘要

The objective of this study is to better understand the scuffing phenomenon using a specially designed in-situ observation system. The developed in-situ observation system comprises four sets of a digital CCD camera and a xenon flashing lamp. The independent operation of the capture devices could capture four successive images over short time intervals during a long-duration experiment. Scuffing behaviour that occurs in a friction surface between a rotating sapphire disc and a stationary martensitic steel pin in dry conditions was observed by the developed in-situ observation system. The results showed the behaviour of plastic flow that occurred in the frictional contact area. Plastic flow was observed to occur immediately after the transfer layer passed through the contact area. Each instance of plastic flow was a few milliseconds long. The speed of plastic flow was much less than the sliding speed. At the end of the fast plastic flow process, the brightness of the area of the plastic flow increased, which could be attributed to the oxidation of the steel surface.
机译:本研究的目的是使用专门设计的原位观察系统更好地了解磨损现象。开发的原位观察系统包括四组数字CCD摄像机和氙闪光灯。捕获设备的独立操作可以在长期实验期间在短时间间隔内捕获四个连续图像。通过开发的原位观察系统观察到在旋转蓝宝石盘和固定的马氏体钢销之间发生在旋转蓝宝石盘和固定马氏体钢销之间的扫描行为。结果表明,摩擦接触面积发生的塑性流动的行为。观察到在通过接触面积的转印层之后立即发生塑料流动。每种塑料流动的实例长几毫秒。塑料流速的速度远小于滑动速度。在快速塑料流程的末端,塑性流量的亮度增加,这可能归因于钢表面的氧化。

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