[ 1 ] 谷冉升,崔毅,程详军,等.车用柴油机主轴承轴瓦微 动磨损研究[J].车用发动机,2020(2):29-34.
[ 2 ] 肖中图,史志刚,李春光,等.给水泵汽轮机动叶片微 动磨损疲劳断裂的失效特征分析[J].热力发电,2021,
50(5):157-162.
[ 3 ] 霍永忠,尹东,赵杰江,等.微动磨损与微动疲劳寿命 的计算与分析方法[J].力学季刊,2015,36(2):165-175.
[ 4 ] CARTER B J, SCHENCK E C,WAWRZYNECK P
A,et al.Three-dimensional Simulation of Fretting
Crack Nucleation and Growth[J].Engineering Fracture
Mechanics,2012,96:447-460.
[ 5 ] ZOU L, ZENG D,LI Y,et al.Experimental and Numerical Study on Fretting Wear and Fatigue of Full-scale
Railway Axles[J].Railway Engineering Science,2020,
28(4):365-381.
[ 6 ] SATO K, HAMAKAWA T, YAMASAKI T,et al.
Fretting Analysis of an Engine Bearing Cap Using
Computer Simulation[J].SAE International Journal of
Engines,2016,9(3):1847-1853.
[ 7 ] 唐正强,张慧杰,李俨,等.微动磨损工况下二维柱面 对平面磨损形貌的数值计算与分析[J].机械设计与 制造,2021(5):34-39.
[ 8 ] 于越,刘红斌.钛合金材料防微动磨损涂层性能研究
[J].西华大学学报(自然科学版),2022,41(3):61-66.
[ 9 ] 胡英俊,黄小波,高玉魁.喷丸处理对锆合金微动磨损 及抗腐蚀性能的影响[J].表面技术,2020,49(7):238-
244.
[10] WANG N,ZHU J L,LIU B,et al.Influence of Ultrasonic Surface Rolling Process and Shot Peening on
Fretting Fatigue Performance of Ti-6Al-4V[J]. Chinese Journal of Mechanical Engineering,2021,34(6):
81-93.
[11] 刘耀东,陈凯,华晓波,等.考虑弹流润滑作用的斜齿轮 啮合分析方法研究[J].计算力学学报,2015(6):838-844.
[12] 谭援强,蒋理宽,姜胜强,等.渐开线花键副微动摩擦接 触分析[J].机械工程学报,2002,54(7):123-130.
[13] 薛向珍,霍启新,郑甲红,等.基于齿向修形的航空渐开 线花键副抗微动磨损研究[J].中国机械工程,2019,
30(20):2447-2455. |