Effect of annealing time on the microstructure and properties of Nb-bearing high-strength IF steel with super-fine grains
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摘要: 以新型含鈮高強細晶IF鋼為研究對象,在實驗室進行了冷軋以及軋后模擬連續退火實驗.結果表明,選擇合適的退火時間,晶粒變得細小、均勻,同時存在一定量的餅形晶粒.由于添加Si、Mn等固溶強化元素,增加了鋼的固溶強化作用;而合金元素Nb的添加,在組織中形成了細小的碳氮化物Nb(C,N),這些碳氮化物彌散分布,通過細晶強化和沉淀析出強化增加了鋼的抗拉強度,因而高強細晶IF鋼的強化機制為固溶強化、細晶強化和沉淀析出強化.更值得注意的是,由于存在PFZ帶(無析出物區)而使實驗鋼呈現高強度低屈服現象.與傳統的IF鋼相比,含鈮高強細晶IF鋼不僅具有細小的晶粒,而且具有低的屈服強度、較高的r值等良好的成型性能.Abstract: Taking a Nb-bearing high-strength IF steel with super-fine grains as an object of study, cold rolling and simulative continuous annealing experiments were carried out in the laboratory. The results show that its microstructure can be refined and homogenized by choosing a feasible annealing time, with a number of cake-shaped grains. The steel is solid-solution strengthened by adding solid-solution elements such as Si and Mn; fine Nb(C,N) forms in its microstructure by adding micro-alloy element Nb. The tensile strength of the steel is improved by fine-grain strengthening and precipitation strengthening due to a dispersive distribution of fine niobium earbonitride and the strengthen mechanisms are solid solution strengthening, fine-grain strengthening and precipitation strengthening. It is noted that the yield strength is low but the tensile strength is high since precipitated free zones exist on one side of grain boundaries. In contrast to a conventional IF steel, the steel has super fine grains and exhibits excellent formability such as low yield strength and high r-values.
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Key words:
- high strength steel /
- niobium /
- strengthening /
- mechanical properties /
- annealing
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