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Effect of the continuous electron beam process treatment in the surface modification of T10 steel

机译:连续电子束工艺处理对T10钢表面改性的影响

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摘要

Surface modification is an important component of improving mechanical properties in mold manufacturing. In the present work, the microstructure and properties of modification layer and the influence of the continuous electron beam process parameters on modification layer of T10 steel are investigated by using a scanning electron beam. Morphology of cross-section presents a stack shape after treatment. Meanwhile the microstructure of cross-section consists of three parts: remelted layer, heat affected zone and substrate. Microstructure of remelted layer consists of acicular and lath martensite and the grains are uniform and tiny after treatment. Surface microhardness increases before decreasing, and the microhardness of sample surface increases to 839HV from 252HV, the statistics after treatment is three times as much as that before treatment. According to the influence of continuous electron beam process on modification layer, surface microhardness increases nonlinear with the increasing beam current, surface roughness increases after decreasing with the increasing beam current, while wear resistance increases before decreasing with the increasing beam current.
机译:表面改性是改善模具制造中机械性能的重要组成部分。本文利用扫描电子束研究了改性层的组织和性能,以及连续电子束工艺参数对T10钢改性层的影响。横截面的形态呈现出处理后的堆叠形状。同时,截面的微观结构由三部分组成:重熔层,热影响区和基体。重熔层的显微组织由针状和板条状马氏体组成,经处理后晶粒均匀细小。表面显微硬度在降低之前先增加,而试样表面的显微硬度则从252HV增加到839HV,处理后的统计数字是处理前的三倍。根据连续电子束工艺对改性层的影响,表面显微硬度随束流的增加而非线性增加,表面粗糙度随束流的增加而减小,而耐磨性随束流的增加而减小。

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