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工程机械用TQ960E微合金化低碳高强度钢的开发 被引量:6
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作者 孟传峰 王一德 +2 位作者 卫英慧 崔天燮 王育田 《特殊钢》 北大核心 2018年第6期66-70,共5页
研究了工程机械用TQ960E微合金化低碳高强度钢的化学成分设计、钢质纯净度提升、热处理工艺试验、析出物分析等,结果表明,TQ960E钢12 mm热轧板(/%:0. 18C,0.23Si,1.50Mn,0.010P,0.003S,0.06Ti,0.002B,0.006 3N,0.001 30)最佳淬火温度860... 研究了工程机械用TQ960E微合金化低碳高强度钢的化学成分设计、钢质纯净度提升、热处理工艺试验、析出物分析等,结果表明,TQ960E钢12 mm热轧板(/%:0. 18C,0.23Si,1.50Mn,0.010P,0.003S,0.06Ti,0.002B,0.006 3N,0.001 30)最佳淬火温度860~900℃,回火温度300~350℃,工业化试制出的钢板屈服强度≥1 000 MPa,抗拉强度≥1 100 MPa,延伸率≥10%,-40冲击功≥34 J,满足国内工程机械用超高强钢的标准及应用要求。 展开更多
关键词 工程机械 高强钢 微合金化 热处理 力学性能 开发
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Variations in the Microstructure and Properties of Mn-Ti Multiple-phase Steel with High Strength under Different Tempering Temperatures 被引量:1
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作者 LI Dazhao LI Xiaonan +3 位作者 cui tianxie LI Jianmin WANG Yutian FU Peimao 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第2期430-436,共7页
There are few relevant researches on coils by tempering,and the variations of microstructure and properties of steel coil during the tempering process also remain unclear.By using thermo-mechanical control process(T... There are few relevant researches on coils by tempering,and the variations of microstructure and properties of steel coil during the tempering process also remain unclear.By using thermo-mechanical control process(TMCP)technology,Mn-Ti typical HSLA steel coils with yield strength of 920 MPa are produced on the 2250 hot rolling production line.Then,the samples are taken from the coils and tempered at the temperatures of 220℃,350℃,and 620℃respectively.After tempering the strength,ductility and toughness of samples are tested,and meanwhile microstructures are investigated.Precipitates initially emerge inside the ferrite laths and the density of the dislocation drops.Then,the lath-shaped ferrites begin to gather,and the retained austenite films start to decompose.Finally,the retained austenite films are completely decomposed into coarse and short rod-shape precipitates composed of C and Ti compounds.The yield strength increases with increasing tempering temperature due to the pinning effect of the precipitates,and the dislocation density decreases.The yield strength is highest when the steel is tempered at 220℃because of pinning of the precipitates to dislocations.The total elongation increases in all samples because of the development of ferrites during tempering.The tensile strength and impact absorbed energy decline because the effect of impeding crack propagation weakens as the retained austenite films completely decompose and the precipitates coarsen.This paper clarifies the influence of different tempering temperatures on phase transformation characteristics and process of Mn-Ti typical multiphase steels,as well as its resulting performance variation rules. 展开更多
关键词 multiple-phase microstructure lath-shaped ferrite polygonal ferrite precipitate retained austenite film
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