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Effect of Cold-Deformation on Austenite Grain Growth Behavior in Solution-Treated Low Alloy Steel

机译:冷变形对溶液处理的低合金钢奥氏体晶粒生长行为的影响

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摘要

The occurrence of abnormal grain growth (AGG) of austenite during annealing is a serious problem in steels with carbide and/or nitride particles, which should be avoided from a viewpoint of mechanical properties. The effects of cold deformation prior to annealing on the occurrence of AGG have been investigated. It was found that the temperature range of the occurrence of AGG is shifted toward a low temperature region by cold deformation, and that the shift increases with the increase of the reduction ratio. The lowered AGG occurrence temperature is attributed to the fine and near-equilibrium AlN particles that are precipitated in the cold-deformed steel, which is readily dissolved during annealing. In contrast, coarse and non-equilibrium AlN particles precipitated in the undeformed steel, which is resistant to dissolution during annealing.
机译:在退火期间奥氏体异常晶粒生长(AgG)的发生是用碳化物和/或氮化物颗粒的钢中的严重问题,从机械性能的观点出发,应避免。研究了在AGG发生前退火之前的冷变形的影响。发现AGG的发生的温度范围通过冷变形朝向低温区域而转移,并且随着减小率的增加而增加。降低的AgG发生温度归因于诸如冷变形钢中沉淀的细小平衡AlN颗粒,其在退火期间容易地溶解。相反,在未变形钢中沉淀的粗糙和非平衡AlN颗粒,其在退火期间耐溶解。

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