[1] Prawoto Y, Ikeda M, Manville S K, et al. Design and failure modes of automotive suspension springs[J]. Engineering Failure Analysis, 2008, 15(8): 1155-1174. [2] Wang S, Xi X H, Zhao Y, et al. Microstructure and mechanical properties of an ultrahigh-strength and ductile medium-carbon high-silicon spring steel[J]. Steel Research International, 2023, 94: 2200149. [3] Xia B, Zhang P, Wang B, et al. Effects of quenching temperature on the microstructure and impact toughness of 50CrMnSiVNb spring steel[J]. Materials Science and Engineering A, 2023, 870: 144856. [4] Zhang L, Gong D H, Li Y C, et al. Effect of quenching conditions on the microstructure and mechanical properties of 51CrV4 spring steel[J]. Metals, 2018, 8(12): 1056. [5] 张 炜, 胥 洲, 高东宏, 等. 热处理工艺对51CrV4钢组织及性能的影响[J]. 金属热处理, 2020, 45(2): 100-104. Zhang Wei, Xu Zhou, Gao Donghong, et al. Effect of heat treatment process on microstructure and mechanical properties of 51CrV4 steel[J]. Heat Treatment of Metals, 2020, 45(2): 100-104. [6] 刘汉卿. 工程机械用钢应用现状和发展前景[J]. 冶金与材料, 2022, 42(5): 171-172. [7] 吴季恂, 周光裕, 荀 闽. 钢的淬透性应用技术[M]. 北京: 机械工业出版社, 1994. [8] 马鸣图, 李志刚. 钒对弹簧钢35SiMnB淬透性和等温转变曲线的影响[J]. 特殊钢, 2001, 22(6): 13-14. Ma Mingtu, Li Zhigang. Influence of vanadium on hardenability and isothermal transformation curve of spring steel 35SiMnB[J]. Special Steel, 2001, 22(6): 13-14. [9] 王晓茜, 王 宝, 周建安, 等. 硼对60Si2Mn弹簧钢连续冷却相变行为的影响[J]. 热加工工艺, 2019, 48(10): 181-184, 188. Wang Xiaoqian, Wang Bao, Zhou Jian'an, et al. Effect of boron on continuous cooling transformation behavior of 60Si2Mn spring steel[J]. Hot Working Technology, 2019, 48(10): 181-184, 188. [10] 卢新春, 罗贻正, 王艳林. 含硼弹簧钢60Si2Mn的淬透性及其CCT曲线[J]. 金属热处理, 2022, 47(12): 132-137. Lu Xinchun, Luo Yizheng, Wang Yanlin. Hardenability of B containing spring steel 60Si2Mn and its CCT curves[J]. Heat Treatment of Metals, 2022, 47(12): 132-137. [11] 苏 帅, 韩 鹏, 杨善武, 等. Ni含量对高强度低合金钢淬透性影响的晶体学认识[J]. 金属学报, 2024, 60(6): 789-801. Su Shuai, Han Peng, Yang Shanwu, et al. Crystallographic understanding of the effect of Ni content on the hardenability of high-strength low-alloy steel[J]. Acta Metallurgica Sinica, 2024, 60(6): 789-801. [12] 元亚莎, 石如星, 元 莎, 等. 55NiCrMoV7钢的过冷奥氏体连续冷却转变曲线[J]. 材料热处理学报, 2022, 43(3): 114-119. Yuan Yasha, Shi Ruxing, Yuan Sha, et al. Continuous cooling transformation curves of undercooled austenite of 55NiCrMoV7 steel[J]. Transactions of Materials and Heat Treatment, 2022, 43(3): 114-119. [13] Jiang B, Dong Z, Zhou L, et al. Microstructural characterization and hardening mechanism of steel for large size bearing ring under fast heating and short soaking time condition[J]. Steel Research International, 2016, 87(9): 1127-1136. [14] 边 书. 高铁用25CrMo车轴钢淬透性的研究[D]. 沈阳: 沈阳理工大学, 2012. |