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首页> 外文期刊>Tribology letters >Simultaneous Synchrotron X-ray Diffraction, Near-Infrared, and Visible In Situ Observation of Scuffing Process of Steel in Sliding Contact
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Simultaneous Synchrotron X-ray Diffraction, Near-Infrared, and Visible In Situ Observation of Scuffing Process of Steel in Sliding Contact

机译:钢在滑移接触中的同步同步X射线衍射,近红外和可见光原位观察

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摘要

This paper describes an in situ observation of the scuffing process of steel by means of a newly developed system that employs a combination of two-dimensional detector synchrotron X-ray diffraction (XRD), a near-infrared CCD array, and a visible CCD array. In the demonstration of the application of the system, a contact area was produced between a fixed steel pin and a rotating sapphire ring, and the XRD ring, visible image, and near-infrared image of the steel surface of the contact area were synchronously captured at 30 fps under dry conditions. The system visually captured the wear behaviour, significant instantaneous temperature increase, and variation of the grain structure of the steel within the contact area during the scuffing process. The overall wear process was observed to comprise several stages, which were identified with first micro-scuffing, normal wear, second microscuffing, and macro-scuffing, respectively. Intermittent plastic flow was observed to occur numerous times with instantaneous heat generation within the contact area during the micro-scuffing processes. The instantaneous heat generation produced an adiabatic boundary condition, which increased the temperature to over 1000 degrees C. The rapid temperature increase and decrease in the contact area also caused repeated phase transformation and reversion between martensite and austenite. The in situ XRD spectrum indicated that the repeated phase transformation and reversion created a definite surface layer that initiated the macro-scuffing process, which caused catastrophic plastic flow.
机译:本文描述了通过新开发的系统对钢的划伤过程的原位观察,该系统结合了二维探测器同步加速器X射线衍射(XRD),近红外CCD阵列和可见CCD阵列。在系统应用的演示中,在固定的钢销和旋转的蓝宝石环之间产生了接触区域,并同步捕获了接触区域的钢表面的XRD环,可见光图像和近红外图像在干燥条件下以30 fps播放。该系统在磨损过程中直观地捕获了磨损行为,瞬时温度显着升高以及钢在接触区域内的晶粒结构变化。观察到整个磨损过程包括几个阶段,分别由第一次微磨损,正常磨损,第二次微磨损和宏观磨损确定。在微擦伤过程中,在接触区域内瞬时产生热量,观察到间歇性塑性流动发生了无数次。瞬时发热产生了绝热边界条件,使温度升高到超过1000摄氏度。接触区域温度的快速升高和降低还引起马氏体和奥氏体之间反复相变和回复。原位XRD光谱表明,重复的相变和逆转产生了确定的表面层,该表面层引发了宏观磨损过程,这导致了灾难性的塑性流动。

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