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Evolution of Microstructure and Texture during Isothermal Annealing of a Heavily Warm-rolled Duplex Steel

机译:热轧双相钢等温退火过程中组织和织构的演变

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The evolution of microstructure and texture during isothermal annealing of a heavily warm-rolled duplex steel (DSS) was studied. For this purpose a DSS steel was hot rolled, homogenized at 1448 K and subsequently warm-rolled to 90% reduction in thickness at 698 K and 898 K. This was followed by isothermal annealing at 1448 K for different time intervals up to 7200 seconds. Lamellar microstructure with alternate arrangement of deformed ferrite and austenite bands was observed in the as warm-rolled condition. The ferrite in DSS warm-rolled at 698 K showed much stronger α -fiber (Rolling direction (RD)// ) than γ -fiber (Normal direction (ND)// ) as compared to the ferrite in DSS warm-rolled at 898 K. The austenite in warm-rolled DSS showed a predominantly pure metal (or copper type) texture. Upon annealing the lamellar morphology of the as warm-rolled structure transformed into a bamboo type morphology for short annealing time but finally broke down with increasing isothermal annealing time due to mutual interpenetration of the two phases. Retention of deformation texture components and presence of annealing twins in austenite indicated discontinuous recrystallization. Despite differences of texture in the as warm-rolled condition the ferrite in annealed DSS showed much stronger α -fiber as compared to γ -fiber due to strong recovery behavior of ferrite during annealing. The texture evolution in the two phases was not affected by the presence of the other phase while grain growth was significantly restricted due to the presence of the other phase.
机译:研究了重热轧双相钢(DSS)等温退火过程中的组织和织构演变。为此,对DSS钢进行热轧,在1448 K下进行均质,然后在698 K和898 K上热轧至厚度减少90%。随后在1448 K下进行等温退火,时间间隔长达7200秒。在热轧条件下观察到层状组织,铁素体和奥氏体带交替排列。在698 K下热轧的DSS中的铁素体比γ-纤维(法向(ND)//)强得多的α-纤维(滚动方向(RD)//)。 DSS在898 K时热轧。奥氏体在热轧DSS中表现出主要为纯金属(或铜型)织构。退火后,热轧组织的层状形态在较短的退火时间内转变为竹型形态,但由于两相相互渗透,最终随着等温退火时间的延长而分解。保留变形织构成分和在奥氏体中存在退火孪晶表明不连续再结晶。尽管在热轧条件下织构有所不同,但退火后的DSS中的铁素体显示出比γ纤维强得多的α-纤维,这是因为在退火过程中铁素体具有很强的恢复性能。两相的纹理演变不受另一相的存在的影响,而晶粒的生长由于另一相的存在而受到显着限制。

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