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浇注钢包环出钢口多孔透气塞吹氩去夹杂行为数值模拟 被引量:3
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作者 刘宏强 郑淑国 朱苗勇 《中国冶金》 CAS CSCD 北大核心 2023年第9期43-51,共9页
针对浇注钢包环出钢口多孔透气塞吹氩去夹杂工艺,以国内某钢厂130 t钢包为研究对象,建立VOF-DPM耦合数学模型,考察了浇注吹氩条件下钢液流场的发展过程以及余钢高度、吹氩流量、透气塞堵塞个数对钢包浇注过程夹杂物去除的影响规律。结... 针对浇注钢包环出钢口多孔透气塞吹氩去夹杂工艺,以国内某钢厂130 t钢包为研究对象,建立VOF-DPM耦合数学模型,考察了浇注吹氩条件下钢液流场的发展过程以及余钢高度、吹氩流量、透气塞堵塞个数对钢包浇注过程夹杂物去除的影响规律。结果表明,浇注初期,随吹氩时间增加,气液两相区逐渐增大,钢包水口上方的2个循环流逐渐变大,当吹氩时间为12 s时,钢包内形成稳定的气液两相流;随余钢高度的降低,夹杂物的去除率逐渐增加,但当余钢高度从500 mm降至250 mm范围内时,夹杂物去除率增幅变缓;随吹氩流量的增加,夹杂物去除率存在2个局部最优点(30 L/min和60 L/min),在这2个局部最优吹氩流量前后,夹杂物的去除率均呈先增大后减小的趋势;与未堵塞相比,堵塞1个透气塞时,夹杂物的去除率相差不大,而堵塞2、3个透气塞时,夹杂物去除率下降明显。研究结果可为该工艺实际应用提供理论指导。 展开更多
关键词 浇注钢包 夹杂物 吹氩流量 余钢高度 透气塞堵塞个数
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Austenite/martensite structure and corresponding ultrahigh strength and high ductility of steels processed by Q&P techniques 被引量:5
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作者 WANG CunYu ZHANG YuJie +3 位作者 CAO WenQuan SHI Jie WANG MaoQiu DONG Han 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第7期1844-1851,共8页
The microstructure of steels treated by Q&P(quenching and partitioning) process was characterized,a method of controlling retained austenite fraction based on inhomogeneous martensitic transformation was proposed,... The microstructure of steels treated by Q&P(quenching and partitioning) process was characterized,a method of controlling retained austenite fraction based on inhomogeneous martensitic transformation was proposed,and the mechanical properties of steels treated by Q&P process were measured.The results show that the microstructure of the studied steels is mainly composed of initial martensite,fresh martensite and retained austenite.The initial marteniste formed at the first quenching step is easily etched;the fresh martensite formed at the final quenching step looks like 'blocky' type phase,and the retained austenite is mainly located on the packet boundary and initial austenite grain boundary.The inhomogeneous microstructure causes the experimental optimum quenching temperature corresponding to maximum retained austenite fraction to be higher than the calculation based on CPE(constrained paraequilibrium) model.The product of tensile strength and total tensile elongation is 47.5 GPa%,and tensile strength of 1760 MPa was obtained for the steel with carbon content of 0.51 wt%.The TRIP(transformation induced plasticity) effects of the large fractioned metastable austenite make a main contribution to the high ductility improvement,and the martensitic matrix provides high strength. 展开更多
关键词 MARTENSITE retained austenite Q&P ultrahigh strength steel ductility heat treatment
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