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HQ100热轧高强钢连续冷却相变研究
引用本文:王中学,赵培林,张可,路峰. HQ100热轧高强钢连续冷却相变研究[J]. 轧钢, 2016, 33(6): 34-37. DOI: 10.13228/j.boyuan.issn1003-9996.20150234
作者姓名:王中学  赵培林  张可  路峰
作者单位:1.山东钢铁股份有限公司莱芜分公司技术中心,山东莱芜271105 ; 2.钢铁研究总院工程用钢所,北京100081
基金项目:山东省科技发展计划项目
摘    要:在Gleeble3800热模拟试验机上,测定了HQ100热轧高强钢的动态CCT曲线,并通过光学显微镜和透射电镜观察试验钢在不同冷却条件下的显微组织形貌,以及采用显微硬度法检测其维氏硬度。结果表明:在0.1~60 ℃/s冷速范围内,试验钢存在珠光体、贝氏体、马氏体转变区;随着冷速的增加,试验钢硬度增加;冷速高于10 ℃/s时,试验钢屈服强度达到900 MPa以上,满足高强度工程机械用钢的要求;组织中存在大量50 nm以下含Ti、V、Mo元素的析出相粒子,其强化机理以沉淀强化和相变强化为主。

关 键 词:HQ100  沉淀强化钢  CCT曲线  显微组织  显微硬度  
收稿时间:2015-11-11

Research on continuous cooling transformation of HQ100 hot rolled high strength steel
WANG Zhong-xue,ZHAO Pei-lin,ZHANG Ke,LU Feng. Research on continuous cooling transformation of HQ100 hot rolled high strength steel[J]. Steel Rolling, 2016, 33(6): 34-37. DOI: 10.13228/j.boyuan.issn1003-9996.20150234
Authors:WANG Zhong-xue  ZHAO Pei-lin  ZHANG Ke  LU Feng
Affiliation:1.R & D Center,Laiwu Company,SD Steel Company Ltd.,Laiwu 271105,China ;2.Institute of Engineering Steel,Central Iron and Steel Research Institute,Beijing 100081,China
Abstract:CCT curves of HQ100 hot rolled steel were determined by using Gleeble3800 thermal simulator.Microstructures of this steel under different cooling conditions were investigated by means of optical microscope and transmission electron microscopy.Vickers-hardness was detected by micro-hardness method.The results showed that at the range of 0.1-60 ℃/s cooling rates,there were transformed zones of pearlite,bainite and martensite appearing in test steels.Meanwhile,with the cooling rate increasing,the vickers-hardness was increased obviously.The yield strength of test steel may reach more than 900 MPa at the range of 10-30 ℃/s cooling rate that could meet the requirements of engineering machine.A number of precipitates with the size under 50 nm including Ti,V,Mo elements were found.The test steel obtained high strength mainly by precipitation strengthening and phase transformation strengthening.
Keywords:HQ100  precipitation strengthening steel   CCT curves   microstructure   microhardness  
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