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[3] | Lu Jie, Su Qixiang, Huang Jixiang, Zhang Huanhuan, Lei Ting, Yin Shubiao, Ma Zhenghong. Effect of different vanadium and nitrogen contents on microstructure and properties of Nb-V microalloyed high-strength seismic reinforcement[J]. IRON STEEL VANADIUM TITANIUM, 2023, 44(4): 149-157. doi: 10.7513/j.issn.1004-7638.2023.04.022 |
[4] | Wang Xingjuan, Wang Yu, Zhu Liguang, Di Tiancheng, Jin Hebin, Piao Zhanlong. Composition design of CaO-Al2O3 series low reactivity continuous casting molding flux for high titanium steel[J]. IRON STEEL VANADIUM TITANIUM, 2022, 43(4): 134-141. doi: 10.7513/j.issn.1004-7638.2022.04.021 |
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[8] | Chen Zhenye, Sun Li, Liu Hongqiang, Sun Xiaoran, Li Shuangjiang. Development of 160 MPa Low Yield Point Steel Plate Used For Earthquake Resistant[J]. IRON STEEL VANADIUM TITANIUM, 2017, 38(2): 128-131,135. doi: 10.7513/j.issn.1004-7638.2017.02.022 |
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[11] | Gu Jing, Wang Shouzeng, Xia Dehong. Discussion on Lining Structure Design of Titanium Slag Melting Electric Arc Furnace[J]. IRON STEEL VANADIUM TITANIUM, 2015, 36(4): 19-23. doi: 10.7513/j.issn.1004-7638.2015.04.004 |
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[15] | David Milbourn, Li Yu. Metallurgical Benefits of Vanadium Microalloying in Producing High Strength Seismic Grade Rebar[J]. IRON STEEL VANADIUM TITANIUM, 2012, 33(2): 1-9. |
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[17] | QIN Bin, SHENG Guang-min, GONG Shi-hong. TESTING AND ANALYSING FOR DUCTILE-BRITTLE TRANSITION TEMPERATURE OF HRB400 ANTI-SEISMIC STEEL BAR[J]. IRON STEEL VANADIUM TITANIUM, 2003, 24(4): 59-63. |