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硅對形變Si-Mn雙相鋼回復及再結晶的影響

Influence of Silicon On the Recovery and Recrystallization of the Cold-Drawn Si-Mn Dual-Phase Steels

  • 摘要: 研究了Si對冷拔形變低碳Si-Mn雙相鋼回復及再結晶過程的影響。試驗結果表明。(1)試驗鋼回復及再結晶過程首先在原雙相組織中的鐵索體區內發生;再結晶晶粒的形成方式既可以是亞晶合并,也可以是亞晶界向外弓出;原鐵素體區再結晶后的α晶粒,大于原雙相組織中馬氏體區再結晶的α-晶粒。(2)鋼中硅含量的增多,顯著推遲形變Si-Mn雙相鋼的回復及再結晶過程。(3)分別計算了試驗鋼回復后期和再結晶前期的激活能。

     

    Abstract: The influence of silicon on the proceedings of the recovery and recrystallization of the cold-drawn Si-Mn dual-phase steels was researched by means of SEM, TEM and HV-hardness. Experimental results show. (1) The proceedings of the recovery and recrystallization of experimental steels appeal firstly in the original ferrite phase of the dual-phase structure, and it is discovered that the formation of a recrystallized grain through the growth of subgrain boundary or subgrain coalescence, and in the ferrite field the recrystallized α-grain size is larger than the recrystallized α-grain size in the marlensi te field. (2) The proceedings of the recovery and recrystallization were delayed obviously increasing silicon content of steel. (3) The recovery activation energy and recrystallization activation energy were calculated respectively.

     

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