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ULTRASONIC NANOCRYSTAL SURFACE MODIFICATION ASSISTED NITRIDING: AN EXPERIMENTAL STUDY

机译:超声纳米晶体表面改性辅助氮化:实验研究

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A powerful surface severe plastic deformation (SSPD) technique, ultrasonic nanocrystal surface modification (UNSM) has been used to treat pure iron to induce surface nanocrystallization. Transmission electron microscopy and surface profiler were used to study the microstructure and surface roughness after UNSM. Results indicate that the surface nanocrystallization with the controllable surface roughness was obtained. After that, gas nitriding of the nanocrystalline and microcrystalline iron was carried out and compared. X-ray diffraction, micro hardness testing and energy dispersive spectroscopy were applied to investigate the phase, micro hardness and distribution of nitrogen atoms in the iron sample after nitriding. It has been found that nitriding efficiency has been significantly improved in UNSM-processed samples than that in the non-processed samples as manifested by higher hardness and higher volume fraction of the nitride phase. With appropriate nanocrystallization, nitriding can occur efficiently at temperature as low as 300°C.
机译:强大的表面严重塑性变形(SSPD)技术,超声纳米晶体表面改性(UNSM)用于治疗纯铁以诱导表面纳米晶体化。透射电子显微镜和表面分析仪用于研究UNSMAS后的微观结构和表面粗糙度。结果表明,获得了具有可控表面粗糙度的表面纳米晶化。之后,进行纳米晶和微晶铁的气体氮化并进行比较。 X射线衍射,微硬度测试和能量分散光谱探讨氮气后铁样品中氮原子的相位,微硬度和分布。已经发现,在未加工样品中的未加工样品中的氮化效率显着改善,其表现为较高的硬度和氮化物相的较高体积分数。通过适当的纳米晶体化,氮化可以在低至300℃的温度下有效地发生。

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