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Effects and Mechanisms of RE on Impact Toughness and Fracture Toughness of Clean Heavy Rail Steel

LIU Cheng-jun , HUANG Ya-he , JIANG Mao-fa

钢铁研究学报(英文版)

Clean high carbon heavy rail steel was prepared by the process of vacuum induction furnace smelting, forging and rolling. Mechanisms of RE on the impact toughness and fracture toughness for clean high carbon steel were investigated. In addition, the appropriate range of RE content for clean high carbon steel was determined. Both the austenite grain size and pearlite lamellar spacing decreased due to small amount of RE, consequently the impact toughness and fracture toughness were improved evidently. When the RE content exceeded a critical value, the pearlite lamellar spacing was increased, because RE was segregated on the austenite grain boundaries, damaged the orientation relationship of pearlite transformation, caused the disorder growth and morphology degenerating of pearlite. With the increasing of RE content, both the impact toughness and fracture toughness of clean high carbon steel were gradually increased at first and then decreased. It was found that when the RE content was between 00081% and 00088%, both the impact toughness and fracture toughness of clean high carbon heavy rail steel were the best. The maximum ballistic work was 212 J (20 ℃) and 122 J (-20 ℃), respectively. The maximum plane-strain fracture toughness was 4567 MPa·m1/2 (20 ℃) and 3704 MPa·m1/2 (-20 ℃), respectively.

关键词: rare earth , high carbon steel , heavy rail steel , clean steel , impact toughness , fracture toughness

稀土元素对重轨钢动态再结晶和珠光体片间距的影响

包喜荣,陈林,郭亚鹏

钢铁

应用Gleeble-1500D热模拟试验机对重轨钢BNbRE和U71Mn进行单道次压缩试验,测定850~1150℃下的真应力-真应变曲线,研究不同终轧温度和稀土元素对重轨钢动态再结晶的影响,并用扫描电镜观察变形后空冷的显微组织。结果表明,稀土元素能显著地抑制形变奥氏体的动态再结晶并细化珠光体片层间距。因此,稀土元素可抑制重轨钢动态再结晶,使其在较高终轧温度下仍能得到细小均匀的显微组织。

关键词: 稀土元素 , heavy rail steel , dynamic recrystallization , pearlite spacing

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