[1]
Aslantas, K. and S. Tasgetiren, A study of spur gear pitting formation and life prediction. Wear, 2004. 257 (11): pp.1167-1175
DOI: 10.1016/j.wear.2004.08.005
Google Scholar
[2]
Guagliano, M., E. Riva, and M. Guidetti, Contact fatigue failure analysis of shot-peened gears. Engineering Failure Analysis, 2002. 9 (2): pp.147-158
DOI: 10.1016/s1350-6307(01)00002-4
Google Scholar
[3]
Moore, DH, Presetting for improving spur gear teeth bending fatigue life, in Engineering, Mechanical 1997, Mississippi State University
Google Scholar
[4]
Zion, HL, A dynamic finite element simulation of the shot-peening process, in Engineering, Aerospace 2003.4, Georgia Institute of Technology
Google Scholar
[5]
Liou, JJ, A theoretical and experimental investigation of roller and gear scuffing, in Engineering, Mechanical 2010, The Ohio State University
Google Scholar
[6]
Hotait, MA, A Theoretical and Experimental Investigation on Bending Strength and Fatigue Life of Spiral Bevel and Hypoid Gears, in Engineering, Mechanical 2011, The Ohio State University. Mechanical Engineering
Google Scholar
[7]
Ding, H., Dynamic wear models for gear systems, in Engineering, Mechanical 2007, The Ohio State University
Google Scholar
[8]
Glodez, S., et al., Evaluation of the service life of gear in regard to bending fatigue in a gear tooth root. Advances in Fracture and Damage Mechanics, September 2, 2003 - September 4, 2003, 2003, 251-252: pp.297-302
DOI: 10.4028/www.scientific.net/kem.251-252.297
Google Scholar
[9]
Glodez, S., et al., Fatigue assessment of high loaded bolted bar connection using strain-life approach. 2006. 324-325 II: pp.711-714
DOI: 10.4028/www.scientific.net/kem.324-325.711
Google Scholar
[10]
Glodez, S., M. Sraml, and J. Kramberger, A computational model for determination of service life of gears. International Journal of Fatigue, 2002, 24 (10): pp.1013-1020
DOI: 10.1016/s0142-1123(02)00024-5
Google Scholar
[11]
Glodez, S., et al., Evaluation of the service life of gears in regard to surface pitting. Engineering Fracture Mechanics, 2004. 71 (Compendex): pp.429-438
DOI: 10.1016/s0013-7944(03)00049-3
Google Scholar
[12]
Kramberger, J., et al., Numerical calculation of bending fatigue life of thin-rim spur gears. Engineering Fracture Mechanics, 2004. 71 (4-6): pp.647-656
DOI: 10.1016/s0013-7944(03)00024-9
Google Scholar
[13]
Kramberger, J., et al., Computational model for the analysis of bending fatigue in gears. Computers & Structures, 2004, 82 (23-26): pp.2261-2269
DOI: 10.1016/j.compstruc.2003.10.028
Google Scholar
[14]
Fernandes, PJL and C. McDuling, Surface contact fatigue failures in gears. Engineering Failure Analysis, 1997. 4 (Compendex): pp.99-107
DOI: 10.1016/s1350-6307(97)00006-x
Google Scholar
[15]
Fernandes, PJL, Tooth bending fatigue failures in gears. Engineering Failure Analysis, 1996. 3 (Compendex): pp.219-225
DOI: 10.1016/1350-6307(96)00008-8
Google Scholar
[16]
Benedetti, M., et al., Influence of shot peening on bending tooth fatigue limit of case hardened gears. International Journal of Fatigue, 2002, 24 (Compendex): pp.1127-1136.
DOI: 10.1016/s0142-1123(02)00034-8
Google Scholar
[17]
Akata, E., MT Altinbalik, and Y. Can, three point load application in single tooth bending fatigue test for evaluation of gear blank manufacturing methods. International Journal of Fatigue, 2004, 26 (Compendex): pp.785-789
DOI: 10.1016/j.ijfatigue.2003.11.003
Google Scholar
[18]
Cariaga, JD, A predictive procedure for wear, pitting, and scoring of gears based on combined thermal and mechanical stresses, in Engineering, Mechanical 1997, The University of Wisconsin - Madison
Google Scholar
[19]
Atan, E., Thermal effects on surface failure in gears, in Engineering, Mechanical. 2002, University of Florida
Google Scholar
[20]
Krantz, TL, The influence of roughness on gear surface fatigue, in Engineering, Mechanical. 2002, Case Western Reserve University
Google Scholar
[21]
Li, S., Lubrication and contact fatigue models for roller and gear contacts, in Engineering, Mechanical. 2009, The Ohio State University
Google Scholar
[22]
Li Jian, A, 59 tanks, the transmission gear fatigue analysis
Google Scholar
[23]
Wang Guojun and Yan Qing East, gear, finite element calculation method of bending fatigues life. Agricultural Equipment & Vehicle Engineering, 2006 (01)
Google Scholar
[24]
Deng Xiaolei, et al., Engineering plastics gear fatigue life of finite element analysis, Light Industry Machinery, 2008 (06)
Google Scholar
[25]
Chen Saike and Wang Yi, contact fatigue life of finite element analysis based on an accurate model of gear. Mechanical transmission, 2007 (02)
Google Scholar
[26]
Zhang Wenqiang, et al., Transmission gear contact stress analysis and fatigue life of the fuel cell car. Computer Aided Engineering, 2007 (04)
Google Scholar
[27]
Chen Demin, helical gear dynamic strength and fatigue damage simulation. Computer-Aided Engineering, 2006 (S1)
Google Scholar
[28]
Chen Jing, History, heavy vehicle transmission as a whole based on the finite element method, dynamic simulation and lifetime prediction of (2009)
Google Scholar
[29]
Liu Fei , Wang. Differential Parametric Design and Finite Element Analysis (2009)
Google Scholar
[30]
Yuan Fei and Xu Yingjiang consider the Interdental load distribution gear bending fatigue life estimates. Mechanical Design, 2006 (04)
Google Scholar
[31]
Lo Haitao, Bionic gear fatigue life and wear resistance. (2009)
Google Scholar
[32]
YuJie Wang, Of automotive gear surface morphology bionic anti-fatigue study
Google Scholar