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Effect of Severe Cold Rolling and Annealing on the Development of Texture, Microstructure and Grain Boundary Character Distribution in an Interstitial Free (IF) Steel

机译:剧烈冷轧和退火对无间隙(IF)钢组织,组织和晶粒边界特征分布的影响

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摘要

A systematic study on the evolution of microstructure, texture and grain boundary character distribution has been carried out for an industrially produced interstitial free (IF) steel after cold rolling by 90 and 98% and also after recrystallization anneal. The deformation microstructure shows refinement of the cell structure along with frequent formation of strain free nano-sized to sub-micron grains after severe cold rolling. Increase in the amount of cold rolling leads to a rise in the density of high angle grain boundaries and a corresponding sharpening of the deformation texture. Annealing of the severely cold rolled material also leads to the formation of submicron to ultra-fine grains. Higher amount of cold rolling sharpens the y fibre intensity. Selective growth during annealing may take place in the more heavily cold rolled (98%) material. The texture, microstructure and grain boundary character distribution appear to be intimately related.
机译:对冷轧90%和98%以及再结晶退火后工业生产的无间隙(IF)钢进行了组织,织构和晶界特征分布演变的系统研究。变形的微观结构显示出细孔结构的细化,以及在剧烈冷轧后频繁形成无应变的纳米级至亚微米级晶粒。冷轧量的增加导致高角度晶界密度的增加和变形织构的相应锐化。严重冷轧的材料的退火还导致形成亚微米至超细晶粒。较高的冷轧量会提高y纤维强度。退火过程中的选择性生长可能发生在强度更高的冷轧(98%)材料中。质地,微观结构和晶界特征分布似乎密切相关。

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