[1]董苑华, 陆长春, 樊 雷. 低合金结构用冷轧钢带L280VK的退火工艺及优化[J]. 柳钢科技, 2015, 4(6): 35-38. Dong Yuanhua, Lu Changchun, Fan Lei. Annealing process and optimization of the L280VK low-alloy structural cold-rolled strip[J]. Science and Technology of Liuzhou Steel, 2015, 4(6): 35-38. [2]佟铁印. 本钢汽车用冷轧低合金高强钢CR420LA的研制与开发[J]. 本钢技术, 2013(4): 26-29. Tong Tieyin. Research and development of the cold rolling high-strength low alloy steel CR420LA for automobile of BX steel[J]. Bengang Technology, 2013(4): 26-29. [3]王 娜, 崔 勇, 刘晓峰. 冷轧工艺对低合金高强钢CR340LA力学性能的影响研究[J]. 钢铁研究学报, 2012(S1): 47-51. Wang Na, Cui Yong, Liu Xiaofeng. Effect of cold rolling process on CR340LA mechanics property[J]. Journal of Iron and Steel Research, 2012(S1): 47-51. [4]韩 风. 汽车用高强度钢在退火过程中的再结晶行为及组织分析[J]. 铸造技术, 2014, 35(11): 2603-2606. Han Feng. Analysis on microstructure and recrystallization behavior of high strength steel during annealing[J]. Foundry Technology, 2014, 35(11): 2603-2606. [5]徐清亮, 林大为, 王 淼, 等. 冷轧高强IF钢再结晶温度的测定[J]. 金属热处理, 2007, 32(10): 14-17. Xu Qingliang, Lin Dawei, Wang Miao, et al. Measurement of recrystallization temperature of cold rolled high strength IF steel[J]. Heat Treatment of Metals, 2007, 32(10): 14-17. [6]王敏莉. Nb-Ti高强IF钢板最优再结晶退火温度确定[J]. 钢铁钒钛, 2011, 32(2): 50-54. Wang Minli. Determination of optimal recrystallization annealing temperature of Nb-Ti microalloying high strength IF steel[J]. Iron Steel Vanadium Titanium, 2011, 32(2): 50-54. [7]吴 浩, 柴立涛, 许 柳. 退火温度对冷轧低碳钢再结晶行为的影响[J]. 金属热处理, 2020, 45(4): 181-182. Wu Hao, Chai Litao, Xu Liu. Effect of annealing temperature on recrystallization behavior of cold rolled low carbon steel[J]. Heat Treatment of Metals, 2020, 45(4): 181-182. [8]尹翠兰. 汽车用冷轧低合金高强钢HC340LA的开发生产[J]. 山东冶金, 2011, 38(5): 1-5. Yin Cuilan. Development and production of cold rolled low alloy high strength steel HC340LA for automobile[J]. Shandong Metallurgy, 2011, 38(5): 1-5. [9]岳有成, 杨 钢, 何惠刚, 等. 均匀化退火对超薄双零铝箔坯料组织与性能的影响[J]. 金属热处理, 2013, 38(9): 41-44. Yue Youcheng, Yang Gang, He Huigang, et al. Effects of homogenizing annealing on microstructure and properties of ultra-thin double zero aluminum foil blank[J]. Heat Treatment of Metals, 2013, 38(9): 41-44. |