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Nanocrystallization and α martensite formation in the surface layer of medium-manganese austenitic wear-resistant steel caused by shot peening

机译:喷丸强化在中锰奥氏体耐磨钢表面层的纳米晶化和α马氏体形成

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摘要

The nanocrystallization and a martensite formation in the surface layer of medium-manganese austenitic wear-resistant steel subjected to high-energy shot peening treatment were investigated by X-ray diffraction and transmission electron microscopy. The results show that nanograined microstructure mainly composed of strain-induced α martensite grains with the average size of ~8 nm were produced in the shot-peened surface. However, any induced phases are not observed in compression-deformed samples with the reduction from 20 to 60%. The examination of grazing-incidence X-ray diffraction in different grazing angles indicates that with decreasing the depth from the shot-peened surface the fraction of strain-induced α martensite increases and the grain size decreases.
机译:利用X射线衍射和透射电子显微镜研究了经过高能喷丸处理的中锰奥氏体耐磨钢表面层的纳米晶化和马氏体形成。结果表明,喷丸处理后的表面产生了纳米晶粒的微观组织,主要由应变诱导的α马氏体晶粒组成,平均尺寸为〜8 nm。但是,压缩变形样品中未观察到任何诱导相,从20%降低到60%。对不同掠射角的掠射X射线衍射进行的检查表明,随着距喷丸表面的深度减小,应变诱导α马氏体的分数增加,晶粒尺寸减小。

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