[1] 张子旺. 65Si2MnWA钢缓冲簧热处理工艺研究[J]. 兵器材料科学与工程, 1989(7): 34-37. [2] 李永菊. 热处理对Ni-18Fe-16Cr合金组织和性能的影响[D]. 哈尔滨: 哈尔滨工业大学, 2014. Li Yongju. Effect of heat treatment of microstructure and properties of Ni-18Fe-16Ni alloy[D]. Harbin: Harbin Institute of Technology, 2014. [3] Hu J, Chen X, Wang Y. Stress relaxation mechanism and life evaluation of titanium alloy springs under long-term thermo-mechanical coupling conditions[J]. Materials Today Communications, 2024, 38: 108472. [4] Ha J W, Seong B S, Jeong H W, et al. Effects of the aging temperature and stress relaxation conditions on γ′ precipitation in Inconel X-750[J]. Journal of Nuclear Materials, 2015, 457: 362-368. [5] Llano-Vizcaya L D, Rubio-Gonzalez C, Mesmacque G, et al. Stress relief effect on fatigue and relaxation of compression springs[J]. Materials & Design, 2007, 28(4): 1130-1134. [6] 李少龙, 赵 振, 董红莉, 等. GH4090合金圆柱螺旋弹簧应力松弛性能研究[J]. 功能材料, 2022, 53(2): 2209-2214. Li Shaolong, Zhao Zhen, Dong Hongli, et al. Research on stress relaxtion performance of GH4090 superalloy cylindrical spiral spring[J]. Journal of Functional Materials, 2022, 53(2): 2209-2214. [7] Li J, Wang Y, Chen X, et al. Microstructure evolution in stress relaxation behavior of austenite AISI 304 stainless steel spring[J]. Materials Characterization, 2019, 148: 266-271. [8] 农 鑫, 高金忠, 吴俊武, 等. 1Cr18Ni9钢螺旋压缩弹簧应力松弛机理[J]. 金属热处理, 2022, 47(1): 106-112. Nong Xin, Gao Jinzhong, Wu Junwu, et al. Stress relaxation mechanism of 1Cr18Ni9 steel helical compression spring[J]. Heat Treatment of Metals, 2022, 47(1): 106-112. [9] 苏德达. 弹簧(材料)应力松弛及预防[M]. 天津: 天津大学出版社, 2002. Su Deda. Stress Relaxation and Prevention of Springs (Materials)[M]. Tianjin: Tianjin University Press, 2002. [10] Gill S P A, Mccolvin G, Strang A. Stress relaxation of nickel-based superalloy helical springs at high temperatures[J]. Materials Science and Engineering A, 2014, 613: 117-129. [11] Nong X, Feng W, Gao J, et al. Stress relaxation constitutive relations and finite element analysis of T9A helical compression spring[J]. Materials Transactions, 2021, 62(7): 962-967. [12] Balau A, Caruntu C, Patrascu D, et al. Modeling of a pressure reducing valve actuator for automotive applications[C]//Proceedings of the IEEE International Conference on Control Applications. 2009: 1356-1361. |