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Electron Microscopic Characterization of Mechanically Modified Surface Layers of Deep Rolled Steel

机译:深轧钢机械改性表面层的电子显微表征

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Process Signatures describe the relationship between the applied material loads and the resulting surface modification according to the predominant effect of the production process used. This approach is supposed to allow the adjustment of surface layer properties prior to the production process. In this paper, the surface modifications of turned, turned + deep rolled and deep rolled metastable austenitic steel with predominantly thermo-mechanical/ mechanical effects are analyzed by electron microscopic methods like Electron Backscatter Diffraction (EBSD) and Transmission Electron Microscope (TEM) analysis. The modified surface layers show an increase in hardness as a result of the induced Hertzian pressures. TEM investigations of FIB-lamellae cut from the surface zone of the turned/ turned + deep rolled workpiece reveal a nanocrystalline microstructure. A superposition of surface modifications from turning and deep rolling is identified in the turned + deep rolled workpiece.
机译:工艺签名根据所使用的生产工艺的主要效果,描述了施加的材料负载与所得到的表面改性之间的关系。该方法被认为可以在生产过程之前调节表面层的性能。在本文中,通过电子反向散射衍射(EBSD)和透射电子显微镜(TEM)等电子显微镜方法分析了具有热力学/机械作用的车削,车削+深轧和深轧亚稳态奥氏体钢的表面改性。改性的表面层由于诱导的赫兹压力而显示出硬度的增加。从车削/车削+深轧工件表面区域切割的FIB薄片的TEM研究显示出纳米晶体的微观结构。在车削+深轧工件中,可以识别出车削和深轧产生的表面改性叠加。

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