[1]刘瑞堂, 刘文博, 刘锦云. 工程材料力学性能[M]. 哈尔滨: 哈尔滨工业大学出版社, 2002: 2-3. [2]中国机械工程学会材料学会. 轴及紧固件的失效分析[M]. 北京: 机械工业出版社, 1988: 296-306. [3]陶春虎. 紧固件的失效分析及其预防[M]. 北京: 航空工业出版社, 2013: 77-85. [4]刘强永, 刘正东, 甘国友, 等. 固溶处理对Haynes282耐热合金组织与硬度的影响[J]. 金属热处理, 2016, 41(1): 52-57. Liu Qiangyong, Liu Zhengdong, Gan Guoyou, et al. Effect of solid solution treatment on microstructure and hardness of Haynes282 heat resistant alloy[J]. Heat Treatment of Metals, 2016, 41(1): 52-57. [5]ASTM E112-2013, Standard test methods for determining average grain size[S]. [6]冯朝辉, 钟立伟, 高文理, 等. 时效制度对2050铝锂合金力学性能及断裂行为的影响[J]. 金属热处理, 2019, 44(9): 108-112. Feng Zhaohui, Zhong Liwei, Gao Wenli, et al. Effect of aging on mechanical properties and fracture behavior of 2050 Al-Li alloy[J]. Heat Treatment of Metals, 2019, 44(9): 108-112. [7]ASTM E3047-2016, Standard test method for analysis of nickel alloys by spark atomic emission spectrometry[S]. [8]ASTM B574-18, Standard specification for low-carbon nickel-chromium-molybdenum, low-carbon nickel-molybdenum-chromium, low-carbon nickel-molybdenum-chromium-tantalum, low-carbon nickel-chromium-molybdenum-copper, and low-carbon nickel-chromium-molybdenum-tungsten alloy rod[S]. [9]张 栋, 钟培道, 陶春虎, 等. 失效分析[M]. 北京: 国防工业出版社, 2008: 63-65. [10]沈 智, 陈 华, 张艳姝, 等. 300M钢制起落架锻后热处理工艺数值模拟[J]. 金属热处理, 2017, 42(6): 185-190. Shen Zhi, Chen Hua, Zhang Yanshu, et al. Numerical simulation of post-forging heat treatment process for 300M steel aircraft undercarriage[J]. Heat Treatment of Metals, 2017, 42(6): 185-190. [11]美国金属学会手册编委会. 美国金属学会热处理手册 非铁合金的热处理 E卷[M]. 北京: 机械工业出版社, 2020: 617-623. [12]ASTM F0606/F0606M-19, Standard test methods for determining the mechanical properties of externally and internally threaded fasteners, washers, direct tension indicators, and rivets[S]. [13]ISO 898-1:2013, Mechanical properties of fasteners made of carbon steel and alloy steel Part 1: Bolts, screws and studs with specified property classes-Coarse thread and fine pitch thread[S]. [14]GB/T 3098.1—2010, 紧固件机械性能 螺栓、螺钉和螺柱[S]. |