[1] LU Y, ZHENG H, ZENG J, et al. Fatigue life reliability evaluation in a high-speed train bogie frame using accelerated life and numerical test [J]. Reliability
Engineering and System Safety, 2019, 188(8): 221-232.
[2] LU Y, XIANG P, DONG P, et al. Analysis of the effects of vibration modes on fatigue damage in high-speed train bogie frames[J]. Engineering Failure
Analysis, 2018, 89(1):222-241.
[3] JEON K W, SHIN K B, KIM J S. A study on fatigue life and strength of a GFRP composite bogie frame for urban subway trains[J]. Procedia Engineering, 2011,
10:2405-2410.
[4] 谢鸣,刘建新,郭峰.转向架构架焊缝疲劳寿命评估的等效热点应力法[J]. 铁道机车车辆,2018,38(3):17-22.
XIE Ming, LIU Jianxin, GUO Feng. Equivalent hot spot stress method for fatigue life assessment of bogie frame welds[J]. Railway Locomotives and Car,2018, 38
(3):17-22.
[5] BERTO F, LAZZARIN P, RADAJ D. Fictitious notch rounding concept applied to sharp V-notches evaluation of the microstructural support factor for different
failure hypotheses part Ⅱ microstructural support analysis[J]. Engineering Fracture Mechanics, 2008,75(10):3060-3072.
[6] RADAJ D, SONSINO C M, FRICKE W. Fatigue Assessment of Welded Joints by Local Approaches[M]. Cambridge: Woodhead Publishing and Maney Publishing, 2006.
[7] 陶传琦.焊接转向架典型焊接结构疲劳性能与焊接工艺研究[D].长沙:中南大学,2010.
TAO Chuanqi. Study on Fatigue Properties and Welding Process of Typical Welded Structures of Welding Bogie[D]. Changsha: Central South University, 2010.
[8] 杨亚强.转向架焊接构架疲劳强度研究[D].成都:西南交通大学,2010.
YANG Yaqiang. Fatigue Analysis of the Welding Bogie Frame[D]. Chengdu: Southwest Jiaotong University, 2010.
[9] CUI Xiaofang, LIN Jian, ZHAO Wenzhong. Optimization of welded structure in bogie frame of high-speed locomotive[J]. Material Science and Technology, 2004,
12(6):606-609.
[10] JONSSON B, BARSOUM Z, SPERLE J O. Weight optimization and fatigue design of a welded bogie beam structure in a construction equipment[J]. Engineering
Failure Analysis, 2012, 19(1):63-76.
[11] 陈高杰.锻造操作机钳臂结构疲劳分析[D].大连:大连理工大学, 2009.
CHEN Gaojie.Fatigue Analysis of the Clamparm of the Forging Manipulator[D]. Dalian: Dalian University of Technology, 2009.
[12] 谢耿昌.轨道动力稳定车主车架结构疲劳强度研究[D].成都:西南交通大学,2014.
XIE Gengchang. Research on Structure Fatigue Strength of the Carbody Used for Dynamic Track Stabilizer[D]. Chengdu: Southwest Jiaotong University, 2014.
[13] 王智辉.悬挂式单轨车辆转向架焊接构架模态分析及强度研究[D].成都:西南交通大学,2017.
WANG Zhihui. Modal and Strength Analysis of the Welded Bogie Frame for Suspended Monorail Vehicle[D]. Chengdu: Southwest Jiaotong University, 2017.
[14] 文孝霞,孔得旭,杜子学. 跨座式双轴宽轮距转向架构架焊缝参数敏感性分析[J]. 重庆交通大学学报(自然科学版),2020,39 (1):115-119.
WEN Xiaoxia, KONG Dexu, DU Zixue. Sensitivity analysis of weld parameters for straddle-type double axle wide wheel bogie frame[J]. Journal of Chongqing Jiaotong
University(Natural Science) , 2020, 39 (1): 115-119.
[15] 陈得意.跨座式单轨车辆转向架构架结构强度分析与优化[D].重庆:重庆交通大学,2015.
CHEN Deyi. Structural Strength Analysis and Optimization of Straddle-Type Monorail Vehicle Bogie Frame[D]. Chongqing: Chongqing Jiaotong University, 2015. |