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Effect of start cooling temperature on microstructure,crystallographic orientation and ductile-to-brittle transition behavior of high strength steel
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作者 LIU Wen-jian LI Hong-ying +5 位作者 KONG Yao-jie LIU Ji-wen LIU Dan GAO Qing PENG Ning-qi XIONG Xiang-jiang 《Journal of Central South University》 2025年第3期776-788,共13页
The ductile-to-brittle transition temperature(DBTT)of high strength steels can be optimized by tailoring microstructure and crystallographic orientation characteristics,where the start cooling temperature plays a key ... The ductile-to-brittle transition temperature(DBTT)of high strength steels can be optimized by tailoring microstructure and crystallographic orientation characteristics,where the start cooling temperature plays a key role.In this work,X70 steels with different start cooling temperatures were prepared through thermo-mechanical control process.The quasi-polygonal ferrite(QF),granular bainite(GB),bainitic ferrite(BF)and martensite-austenite constituents were formed at the start cooling temperatures of 780℃(C1),740℃(C2)and 700℃(C3).As start cooling temperature decreased,the amount of GB decreased,the microstructure of QF and BF increased.Microstructure characteristics of the three samples,such as high-angle grain boundaries(HAGBs),MA constituents and crystallographic orientation,also varied with the start cooling temperatures.C2 sample had the lowest DBTT value(−86℃)for its highest fraction of HAGBs,highest content of<110>oriented grains and lowest content of<001>oriented grains parallel to TD.The high density of{332}<113>and low density of rotated cube{001}<110>textures also contributed to the best impact toughness of C2 sample.In addition,a modified model was used in this paper to quantitatively predict the approximate DBTT value of steels. 展开更多
关键词 X70 steel start cooling temperature ductile-to-brittle transition martensite-austenite islands crystallographic orientation ductile-to-brittle transition temperature(DBTT) prediction model
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微量Fe、Si对铝导电杆组织与性能的影响 被引量:2
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作者 金胜 李红英 +4 位作者 孔耀颉 姜雁斌 饶茂 杨奇锋 王选理 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第7期2188-2199,共12页
采用电子背散射衍射(EBSD)、扫描电镜(SEM)、透射电镜(TEM)、扫描探针显微镜(SPM)、室温拉伸、单臂电桥和纳米压痕蠕变等方法,研究了微量Fe、Si对铝导电杆组织与性能的影响。结果表明:Fe、Si能够降低导电杆的晶粒尺寸,并使织构组分由弱... 采用电子背散射衍射(EBSD)、扫描电镜(SEM)、透射电镜(TEM)、扫描探针显微镜(SPM)、室温拉伸、单臂电桥和纳米压痕蠕变等方法,研究了微量Fe、Si对铝导电杆组织与性能的影响。结果表明:Fe、Si能够降低导电杆的晶粒尺寸,并使织构组分由弱〈001〉+〈111〉双织构向强〈111〉织构转变,产生沿挤压方向分布的Al-Fe和Al-Fe-Si相,且在第二相和(亚)晶界处出现位错塞积;Fe、Si通过粗颗粒促进再结晶和细颗粒抑制再结晶的共同作用,造成导电杆的显微组织沿径向出现周期性交替分布;Fe、Si能够在牺牲较小导电率的前提下,显著提高铝导电杆的强度和抗蠕变性能。 展开更多
关键词 FE SI 铝导电杆 动态再结晶 强度 导电率 蠕变
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