[1]牛艳娥, 赵芃沛, 李 宁, 等. 国内外超高强度钢的研究现状及应用[J]. 兵器装备工程学报, 2021, 42(7): 274-279. Niu Yan'e, Zhao Pengpei, Li Ning, et al. Research status and application of ultra-high strength steel at home and abroad[J]. Journal of Ordnance Equipment Engineering, 2021, 42(7): 274-279. [2]梁静宇, 石增敏, 谢 镐, 等. 汽车用超高强度钢的合金化方式及组织控制[J]. 金属热处理, 2021, 46(4): 20-25. Liang Jingyu, Shi Zengmin, Xie Gao, et al. Alloying mode and microstructure control of ultra-high strength steels for automobile[J]. Heat Treatment of Metals, 2021, 46(4): 20-25. [3]Malakondaiah G, Srinivas M, Rama Rao P. Ultrahigh-strength low-alloy steels with enhanced fracture toughness[J]. Progress in Materials Science, 1997, 42: 209-242. [4]梁冬梅, 朱远志, 刘光辉. 马氏体时效钢的研究进展[J]. 金属热处理, 2010, 35(12): 34-39. Liang Dongmei, Zhu Yuanzhi, Liu Guanghui. Development and application of maraging steels[J]. Heat Treatment of Metals, 2010, 35(12): 34-39. [5]Xu Z K, Wang B, Zhang P, et al. Short fatigue crack growth behavior in 18Ni marageing steel[J]. Materials Science and Engineering A, 2021, 807: 140844. [6]Wang B, Zhang P, Duan Q Q, et al. Optimizing the fatigue strength of 18Ni maraging steel through ageing treatment[J]. Materials Science and Engineering A, 2017, 707: 674-688. [7]Wang W, Yan W, Duan Q Q, et al. Study on fatigue property of a new 2.8 GPa grade maraging steel[J]. Materials Science and Engineering A, 2010, 527: 3057-3063. [8]Tian J L, Wang W, Li H B, et al. Understanding main factors controlling high cycle fatigue crack initiation and propagation of high strength maraging stainless steels with Ti addition[J]. Materials Science and Engineering A, 2021, 805: 140589. [9]Gupta Renu N, Raja V S. Environmentally assisted cracking susceptibility of dark etched HAZ/parent metal interface region of 18Ni 250 maraging steel weldment[J]. Materials Science and Engineering A, 2020, 774: 138911. [10]Shamantha C R, Narayanan R, Iyer K J L, et al. Tensile properties and fracture toughness of 18Ni (250 grade) maraging steel weldments[J]. Science and Technology of Welding and Joining, 2000, 5(5): 329-337. [11]邵 犬, 张立武, 吴 军. 焊接参数对超高强度马氏体时效不锈钢焊接接头组织性能的影响[J]. 热加工工艺, 2011, 40(7): 146-148. Shao Quan, Zhang Liwu, Wu Jun. Effect of welding parameters on microstructure and properties of welded joint of ultra-high strength martensitic stainless steel[J]. Hot Working Technology, 2011, 40(7): 146-148. [12]陈元园, 沈少波, 汪 晨, 等. 氩弧焊焊接18Ni马氏体时效钢(250)薄板焊接接头的组织和力学性能研究[J]. 四川冶金, 2022, 44(1): 44-49, 61. Chen Yuanyuan, Shen Shaobo, Wang Chen, et al. Study on the microstructure and mechanical properties of the welded joints of 18Ni Maraging steel(250) sheets welded by argon welding[J]. Sichuan Metallurgy, 2022, 44(1): 44-49, 61. [13]Shamantha C R, Narayanan R, Iyer K J L, et al. Microstructural changes during welding and subsequent heat treatment of 18Ni (250-grade) maraging steel[J]. Materials Science and Engineering A, 2000, 287: 43-51 [14]Ulrike K, Reinhard S, Michael F, et al. Effect of inclusion type on the very high cycle fatigue properties of 18Ni maraging steel[J]. Journal of Materials Science, 2017, 52(10): 5954-5967. [15]Schuller R, Fitzka M, Irrasch D, et al. VHCF properties of nitrided 18Ni maraging steel thin sheets with different Co and Ti content[J]. Fatigue and Fracture of Engineering Materials and Structures, 2015, 38(5): 518-527. [16]阿 荣, 乔建设, 李建萍, 等. Ti对低合金高强钢大热输入焊缝夹杂物的影响[J]. 机械工程学报, 2014, 50(8): 34-39. A Rong, Qiao Jianshe, Li Jianping, et al. Effects of titanium on inclusion in high heat input welds of high strength low alloy steel[J]. Journal of Mechanical Engineering, 2014, 50(8): 34-39. [17]Tian J L, Wang W, Li H B, et al. Effect of deformation on precipitation hardening behavior of a maraging steel in the aging process[J]. Materials Characterization, 2019, 155: 109827. [18]安同邦, 单际国, 魏金山, 等. 热输入对1000 MPa 级工程机械用钢接头组织性能的影响[J]. 机械工程学报, 2014, 50(22): 42-49. An Tongbang, Shan Jiguo, Wei Jinshan, et al. Effect of heat input on microstructure and performance of welded joint in 1000 MPa grade steel for construction machinery[J]. Journal of Mechanical Engineering, 2014, 50(22): 42-49. [19]刘海园, 郜晓溪, 王渊博, 等. 时效温度对马氏体不锈钢激光焊接接头组织和性能的影响[J]. 机械工程学报, 2012, 48(16): 69-73. Liu Haiyuan, Gao Xiaoxi, Wang Yuanbo, et al. Microstructure and mechanical properties of stainless maraging steel laser weldments after aging at different temperatures[J]. Journal of Mechanical Engineering, 2012, 48(16): 69-73. [20]何 毅, 刘 凯, 杨 柯. 固溶温度对超纯净18Ni(350)马氏体时效钢断裂韧性及微观组织的影响[J]. 金属学报, 2003, 39(4): 381-386. He Yi, Liu Kai, Yang Ke. Effect of solution temperature on fracture toughness and microstructure of ultra-purified 18Ni(350) maraging steel[J]. Acta Metallurgica Sinica, 2003, 39(4): 381-386. |