[1]张中武. 高强度低合金钢(HSLA)的研究进展[J]. 中国材料进展, 2016, 35(2): 141-151. Zhang Zhongwu. Research development of high strength low alloy (HSLA) steels[J]. Materials China, 2016, 35(2): 141-151. [2]Galibois A, Krishnadev M R, Dubé A. Control of grain size and sub-structure in plain carbon and high strength low alloy (HSLA) steels-the problem and the prospect[J]. Metallurgical Transactions A, 1979, 10(8): 985-995. [3]康永林. 现代汽车板工艺及成形理论与技术[M]. 北京: 冶金工业出版社, 2009. Kang Yonglin. Theory and Technology of Processing and Forming for Advanced Automobile Steel Sheets[M]. Beijing: Metallurgical Industry Press, 2009. [4]李远鹏. 热镀锌DP780双相钢的选择性氧化行为研究[D]. 北京: 钢铁研究总院, 2012. Li Yuanpeng. A study on selective oxidation behaviors of DP780 dual phase steels during hot-dip galvanizing process[D]. Beijing: Central Iron and Steel Research Institute, 2012. [5]冯士杰, 江社明, 李远鹏, 等. 预氧化对第三代汽车钢热浸镀锌的影响[J]. 金属热处理, 2014, 39(4): 26-30. Feng Shijie, Jiang Sheming, Li Yuanpeng, et al. Influence of preoxidation on galvanizability of the third generation automotive steel [J]. Heat Treatment of Metals, 2014, 39(4): 26-30. [6]邓照军, 林承江. DP780热镀锌板表面点状缺陷分析[C]//第十一届中国钢铁年会论文集—S04. 表面与涂镀. 中国金属学会, 2017. [7]吴庆美, 郑连辉, 蔡传博, 等. 热镀锌双相钢中亮点缺陷分析[J]. 金属热处理, 2016, 41(10): 195-197. Wu Qingmei, Zheng Lianhui, Cai Chuanbo, et al. Defect analysis of bright dot in hot dip galvanized dual phase steel[J]. Heat Treatment of Metals, 2016, 41(10): 195-197. [8]杜小峰, 陈园林, 孙方义, 等. 合金化热镀锌高强钢JAC590R的组织性能与镀层结构分析[J]. 武钢技术, 2016, 54(5): 36-39. Du Xiaofeng, Chen Yuanlin, Sun Fangyi, et al. Measurement on structure properties and coating microstructure of galvannealed high strength steel JAC590R[J]. Wisco Technology, 2016, 54(5): 36-39. [9]郭大伟. 热镀锌合金化镀层腐蚀行为及机理研究[D]. 北京: 钢铁研究总院, 2014. Guo Dawei. Studies on corrosion behaviour and mechanism of galvannealed coating[D]. Beijing: Central Iron and Steel Research Institute, 2014. [10]Khondker R, Mertens A, Mcdermid J R. Effect of annealing atmosphere on the galvanizing behavior of a dual-phase steel[J]. Materials Science & Engineering A, 2007, 463(1/2): 157-165. [11]Liu H, Li F, Shi W, et al. Characterization of hot-dip galvanized coating on dual phase steels[J]. Surface and Coatings Technology, 2011, 205(11): 3535-3539. [12]Eynde X V, Servais J P, Lamberigts M. Investigation into the surface selective oxidation of dual-phase steels by XPS, SAM and SIMS[J]. Surface and Interface Analysis, 2003, 35(12): 1004-1014. [13]Alibeigi S, Kavitha R, Meguerian R J, et al. Reactive wetting of high Mn steels during continuous hot-dip galvanizing[J]. Acta Materialia, 2011, 59(9): 3537-3549. [14]Wagner C. Types of reactions in the oxidation of alloys[J]. Journal of the Electrochemical Society, 1959, 63: 771-775. [15]Dionne S. The characterization of continuous hot-dip galvanized and galvannealed steels[J]. JOM, 2006, 58(3): 32-40. [16]王贺贺. 选择性氧化和合金化工艺参数对DP590合金化镀层组织和性能的影响研究[D]. 北京: 钢铁研究总院, 2015. Wang Hehe. The influence of selective oxidation and galvannealing parameters on the structure and properties of DP590 galvannealed coatings layers[D]. Beijing: Central Iron and Steel Research Institute, 2015. |