DocumentCode :
692225
Title :
Investigation of fatigue behaviour of traction gear box gears
Author :
Malgar, Deepak ; Udupa, N.G.S. ; Venkatram, Nalla
Author_Institution :
Dept. of Mech. Eng., NCET, Bangalore, India
fYear :
2013
fDate :
27-28 Sept. 2013
Firstpage :
1
Lastpage :
5
Abstract :
Fatigue behaviour of traction gear box gears there are several kinds of stresses present in loaded and rotating gear teeth. Bending stress fatigue calculation is the basic of stress analysis. It is difficult to get correct answer on gear tooth stress by implying fundamental stress equation, such as Lewis formula for bending stress. The detailed gear stressing is the key of this paper. The design of an effective and reliable gearing system is include its ability to with stand (Root Bending Stress) and Various research methods such as Theoretical, Numerical and Experimental have been done throughout the years. We primarily prefer Theoretical and Numerical methods because Experimental testing can be expensive. So many researchers have utilized FEM to predict RBS and SCS. In this study we use a 3D model of gear and finite element analysis to conduct RBS calculation for mating traction spur gears for different root radius and pair of traction spur gear without tooth modification and transmission error is define in a cad and FEA is done by using finite element software ANSYS. Obtained FEA results is comparable with theoretical and AGMA standard and fatigue life. It is found that Lewis formula equation is used for quick bending stress calculation for gear, where as the AGMA standards and FEM is used for detailed gear stress calculation for a pair of life prediction. A gearbox consists of a set of gears, shafts and bearings that are mounted in an enclosed lubricated housing. They are available in a broad range of sizes, capacities and speed ratios.
Keywords :
CAD; bending; design engineering; fatigue; finite element analysis; gears; machine bearings; mechanical engineering computing; reliability; shafts; solid modelling; stress analysis; 3D model; AGMA standards; ANSYS software; FEM; Lewis formula; RBS calculation; bearings; bending stress fatigue; enclosed lubricated housing; fatigue behaviour; finite element method; fundamental stress equation; gear stressing; gearing system design; life prediction; root bending stress; rotating gear teeth; shafts; stress analysis; traction gear box gears; And Finite Element Method; Contact Stress; Root Bending Stress; Spur Gear;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Research & Technology in the Coming Decades (CRT 2013), National Conference on Challenges in
Conference_Location :
Ujire
Electronic_ISBN :
978-1-84919-868-4
Type :
conf
DOI :
10.1049/cp.2013.2528
Filename :
6851575
Link To Document :
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