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Characterization of high phosphorous containing hot rolled weather resistant structural steels

机译:含高磷热轧耐候性结构钢的表征

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Three steels (G22, G32 and SCOR) containing 0.15-0.19% phosphorous and different amounts of Cr, Cu and Ni were made in laboratory and characterized for evaluating mechanical and textural properties. The values of Charpy V notch impact (CVN) energy, YS, UTS and %EL of G22 and SCOR steels conformed to that of S235JR, S275JR and S335JR structural grades of EN10025-2:2004 specification. SCOR steel exhibited the highest CVN energy although it had the highest pearlite content (15.16%) and carbon equivalent (0.34). While CVN energy was suppressed significantly with increasing phosphorus concentration beyond 0.15%, it was also decreased on increasing Cr and decreasing Ni content as in the case of G32 steel. However, all specimens revealed dimpled fracture mode after tensile testing. In the case of G22 steel, Φ2 45° section of ODF obtained using EBSD revealed a weak but nearly uniform γ fiber texture ((< 111 > )‖ND), an indicative of good forming quality of hot rolled structurals. Hot tensile and compression test was performed for evaluating casting and hot rolling problems. The reduction in area (RA) values obtained through hot tensile test in temperature range of 850-1100 ℃ were found to be greater than 60% for G22 steel. In contrary to this, susceptibility to hot cracking of G32 steel was attributed to its minimum RA value (37%) at 900 ℃ The flow stress characteristics of G22 steel at different temperatures were comparable to that of other commercial grade structural steels.
机译:在实验室中制作了三种钢(G22,G32和SCOR),它们分别含有0.15-0.19%的磷和不同含量的Cr,Cu和Ni,以评估其机械性能和组织性能。 G22和SCOR钢的夏比V缺口冲击(CVN)能量,YS,UTS和%EL的值符合EN10025-2:2004规格的S235JR,S275JR和S335JR结构等级的值。尽管SCOR钢具有最高的珠光体含量(15.16%)和碳当量(0.34),但其CVN能量最高。当磷含量增加到超过0.15%时,CVN能量得到了显着抑制,但与G32钢一样,随着Cr的增加和Ni含量的减少,CVN能量也降低了。但是,所有样品在拉伸试验后均显示出凹痕断裂模式。对于G22钢,使用EBSD获得的ODF的Φ245°截面显示出较弱但几乎均匀的γ纤维织构((<111>)‖ND),这表明热轧结构的成型质量良好。进行热拉伸和压缩测试以评估铸造和热轧问题。对于G22钢,通过在850-1100℃的温度范围内通过热拉伸试验获得的面积减小率(RA)被发现大于60%。与此相反,G32钢在900℃时的最小RA值(37%)是导致其热裂敏感性的原因。G22钢在不同温度下的流变应力特性与其他商业级结构钢相当。

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