[1]李杨, 刘汉武, 杜云慧, 等. 汽车用先进高强钢的应用现状和发展方向[J]. 材料导报A: 综述篇, 2011, 25(13): 101-104.
LI Yang, LIU Hanwu, DU Yunhui, et al. Applications and developments of AHSS in automobile industry [J]. Materials Review, 2011, 25(13): 101-104.
[2]万子轩, 王敏, 焦海伦, 等. 热成形钢与低碳钢电阻凸焊的数值模拟[J]. 上海交通大学学报, 2015, 49(1): 80-85.
WAN Zixuan, WANG Min, JIAO Hailun, et al. Numerical simulation of projection welding between hot-stamped steel and low-carbon steel [J]. Journal of Shanghai Jiao Tong University, 2015, 49(1): 80-85.
[3]林建平, 王立影, 田浩彬, 等. 超高强度钢板热冲压成形研究与进展[J]. 热加工工艺, 2008, 37(21): 140-144.
LIN Jianping, WANG Liying, TIAN Haobin, et al. Research and progress of hot stamping of ultrahigh strength [J]. Hot Working Technology, 2008, 37(21): 140-144.
[4]杨洪林, 张深根, 洪继要, 等. 22MnB5热冲压钢的研究进展[J]. 锻压技术, 2014, 39(1): 1-5.
YANG Honglin, ZHANG Shengen, HONG Jiyao, et al. Development research on 22MnB5 hot stamping steel [J]. Forging and Stamping Technology, 2014, 39(1): 1-5.
[5]李辉平, 赵国群, 张雷, 等. 超高强度钢板热冲压及模内淬火工艺的发展现状[J]. 山东大学学报(工学版), 2010, 40(3): 69-74.
LI Huiping, ZHAO Guoqun, ZHANG Lei, et al. The development status of hot stamping and quenching of ultra high-strength steel [J]. Journal of Shandong University: Engineering Science, 2010, 40(3): 69-74.
[6]叶永盛, 单忠德, 王宝雨, 等. 防撞梁热冲压成形温度场研究[J]. 金属热处理, 2014, 39(3): 138-141.
YE Yongsheng, SHAN Zhongde, WANG Baoyu, et al. Reaearch on temperature field of door beam during hot stamping [J]. Heat Treatment of Metals, 2014, 39(3): 138-141.
[7]韩小强, 于宏元, 盈亮, 等. 热冲压关键工艺参数对零件力学性能影响研究[J]. 锻压装备与制造技术, 2013, 48(4): 58-62.
HAN Xiaoqiang, YU Hongyuan, YING Liang, et al. Rule research on strain paths during deep drawing process of high strength steel DP590 [J]. China Me-talforming Equipment and Manufacturing Technology, 2013, 48(4): 58-62.
[8]HARDELL J, PRAKASH B. High-temperature friction and wear behaviour of different tool steels during sliding against Al-Si-coated high-strength steel [J]. Tribology International, 2008, 41(7): 663-671.
[9]GHIOTTI A, BRUSCHI S, SGARABOTTO F, et al. Tribological performances of Zn-based coating in direct hot stamping [J]. Tribology International, 2014, 78(4): 142-151.
[10]MU Y, WANG B, HUANG M, et al. Investigation on tribological characteristics of boron steel 22MnB5-tool steel H13 tribopair at high temperature [J]. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology, 2017, 231(2): 165-175.
[11]STOTT F H. The role of oxidation in the wear of alloys [J]. Tribology International, 1998, 31(1-3): 61-71.
[12]TAKEDA M, ONISHI T, NAKAKUBO S, et al. Physical properties of iron-oxide scales on Si-containing steels at high temperature [J]. Materials Tran-sactions, 2009, 50(9): 2242-2246.
[13]陈康敏, 王树奇, 杨子润, 等. 钢的高温氧化磨损及氧化物膜的研究[J]. 摩擦学学报, 2008, 28 (5): 475-479.
CHEN Kangmin, WANG Shuqi, YANG Zirun, et al. High temperature wear and oxide film of steels [J]. Tribology, 2008, 28 (5): 475-479.
[14]CHANG Y, TANG X, ZHAO K, et al. Investigation of the factors influencing the interfacial heat transfer coefficient in hot stamping [J]. Journal of Materials Processing Technology, 2016, 228: 25-33.
[15]HARDELL J, HERNANDEZ S, MOZGOVOY S, et al. Effect of oxide layers and near surface transformations on friction and wear during tool steel and boron steel interaction at high temperatures [J]. Wear, 2015, 330: 223-229. |