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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Kinetics and formation mechanisms of intragranular ferrite in V-N microalloyed 600 MPa high strength rebar steel
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Kinetics and formation mechanisms of intragranular ferrite in V-N microalloyed 600 MPa high strength rebar steel

机译:V-N微合金化600 MPa高强度钢筋钢中晶内铁素体的动力学和形成机理

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To systematically investigate the kinetics and formation mechanisms of intragranular ferrite (IGF), isothermal heat treatment in the temperature range of 450A degrees C to 600A degrees C with holding for 30 s to 300 s, analysis of the corresponding microstructures, and observation of the precipitated particles were conducted in V-N microalloyed 600 MPa high strength rebar steel. The potency of V(C,N) for IGF nucleation was also analyzed statistically. The results show that the dominant microstructure transforms from bainite (B) and acicular ferrite (AF) to grain boundary ferrite (GBF), intragranular polygonal ferrite (IPF), and pearlite (P) as the isothermal temperature increases from 450A degrees C to 600A degrees C. When the holding time at 600A degrees C is extended from 30 s to 60 s, 120 s, and 300 s, the GBF content ranges from 6.0vol% to 6.5vol% and the IPF content increases from 0.5vol% to 2.8vol%, 13.1vol%, and 13.5vol%, respectively, because the ferrite transformation preferentially occurs at the grain boundaries and then occurs at the austenite grains. Notably, V(C,N) particles are the most effective nucleation site for the formation of IPF, accounting for 51% of the said formation.
机译:为了系统地研究晶粒内铁素体(IGF)的动力学和形成机理,在450A至600A的温度范围内等温热处理并保持30 s至300 s,分析相应的微观结构,并观察沉淀物颗粒在VN微合金化600 MPa高强度钢筋中进行。还统计分析了V(C,N)对IGF成核的效力。结果表明,随着等温温度从450A升高到600A,主要的显微组织从贝氏体(B)和针状铁素体(AF)转变为晶界铁素体(GBF),晶内多边形铁素体(IPF)和珠光体(P)。当在600A摄氏度下的保持时间从30 s扩展到60 s,120 s和300 s时,GBF含量从6.0vol%到6.5vol%,IPF含量从0.5vol%增加到2.8因为铁素体相变优先发生在晶界处,然后再发生在奥氏体晶粒处,所以体积分数分别为vol%,13.1vol%和13.5vol%。值得注意的是,V(C,N)颗粒是IPF形成中最有效的成核位点,占所述形成的51%。

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