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作 者:姚连登[1] 赵四新[1,2] 赵小婷[1] 李红斌[1]
机构地区:[1]宝钢技术中心,上海201900 [2]上海交通大学材料科学与工程学院,上海200030
出 处:《材料热处理学报》2009年第3期132-136,共5页Transactions of Materials and Heat Treatment
摘 要:采用低碳微合金成分体系和直接淬火工艺,研制了屈服强度超过800MPa,抗拉强度超过950MPa,-40℃冲击功超过90J且焊接裂纹敏感性指数Pcm小于0.2%的40mm低焊接裂纹敏感性厚板。厚板的微观组织为厚度小于1μm贝氏体铁素体板条和沿板条界面分布的M/A组元,贝氏体板条内部有亚板条。随着终冷温度的降低,贝氏体铁素体板条变细。不同终冷温度钢板的贝氏体板条内部均存在高密度位错。试验用钢的贝氏体形核长大过程可以用扩散机制较好的解释。A kind of low carbon micro-alloyed heavy plates with thickness 40mm and low susceptibility to welding crack was produced by direct quenching process. Yield strength,tensile strength and charpy V-notch impact energy at - 40℃ of the heavy plates are higher than 800MPa, 905MPa and 90J, respectively. The microstrueture of the heavy plates consists of bainitic ferrite laths with thickness less than 1μm and M/A constituent distributed at bainitic ferrite lath boundaries. Bainitic ferrite laths composed by sub-plates become thinner with the finish cooling temperature decreasing. High density dislocations are observed in the bainitic ferrite laths of experimental steel plates produced at different finish cooling temperatures. The bainite nucleation and growth process in the experimental steel can be explained reasonably by diffusion mechanism.
分 类 号:TG111.5[金属学及工艺—物理冶金] TG135.1[金属学及工艺—金属学]
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