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Influence of recrystallized microstructure on the mechanical properties of cold rolled microalloy high strength steel
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作者 Ban Bijun Yang Jianming Xiao Zhenyu 《Baosteel Technical Research》 CAS 2008年第4期55-58,共4页
Because of the influence of Nb-educts in cold rolled Nb-microalloy high strength steel manufactured by a continuous annealing unit, different quantities of non-recrystallized ferrite exist in the material, which leads... Because of the influence of Nb-educts in cold rolled Nb-microalloy high strength steel manufactured by a continuous annealing unit, different quantities of non-recrystallized ferrite exist in the material, which leads to great fluctuation of mechanical behavior of the material. In this study, the relationship between non-recrystallized ferrite and mechanical properties is analyzed, and some factors influencing the formation of non-recrystallized ferrite are also studied. 展开更多
关键词 NBC ratio of non-recrystallized ferrite tensile strength yield strength
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Effects of Rolling Processes on Yield Ratio and Formability of Hot Rolled Gas Cylinder Steel 被引量:1
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作者 JIA Yue-cai1, GUO Hai-rong1, LI Ran2, LI Hua-long1 (1. Institute of Research of Iron and Steel, Jiangsu Shagang Group, Zhangjiagang 215625, Jiangsu, China 2. Chief Engineering Offices, Jiangsu Shagang Group, Zhangjiagang 215625, Jiangsu, China) 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2012年第3期52-55,共4页
Deep drawing properties of hot rolled gas cylinder steel was investigated by using HP295 steel in terms of microstructure, texture, yield ratio, plastic strain ratio (r value) and plastic anisotropy (Ar). The grai... Deep drawing properties of hot rolled gas cylinder steel was investigated by using HP295 steel in terms of microstructure, texture, yield ratio, plastic strain ratio (r value) and plastic anisotropy (Ar). The grains in the hot strip were largely equiaxed, and the texture was weak, containing a- and ?'fibre. Reheating temperature, finish roll ing temperature and cooling rate after rolling influenced the ferrite-pearlite band formation significantly, and the yield ratio increased steeply with decreasing coiling temperature below 630 ~C. The anisotropy is relatively high due to re- tained severe ferrite-pearlite band. A mechanism of the band formation due to manganese segregation is elaborated and confirmed validly, from which the measures to avoid the band formation are worked out. Rolling parameters have been optimized by the measures, and industrial production of the gas cylinder steel has been made possible with much improved r-and △r-values, while meeting other specifications. 展开更多
关键词 yield ratio formability ferrite pearlite band texture plastic anisotropy
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