Dynamic Bending Stress Analysis of Power Train

Author(s):  
Masayoshi Ohta ◽  
Hiroaki Nimura ◽  
Yasuyuki Hagino
Author(s):  
Layue Zhao ◽  
Robert C Frazer ◽  
Brian Shaw

With increasing demand for high speed and high power density gear applications, the need to optimise gears for minimum stress, noise and vibration becomes increasingly important. ISO 6336 contact and bending stress analysis are used to determine the surface load capacity and tooth bending strength but dates back to 1956 and although it is constantly being updated, a review of its performance is sensible. Methods to optimise gear performance include the selection of helix angle and tooth depth to optimise overlap ratio and transverse contact ratio and thus the performance of ISO 6336 and tooth contact analysis methods requires confirmation. This paper reviews the contact and bending stress predicted with four involute gear geometries and proposes recommendations for stress calculations, including a modification to contact ratio factor Zɛ which is used to predict contact stress and revisions to form factor YF and helix angle factor Yβ which are cited to evaluate bending stress. The results suggest that there are some significant deviations in predicted bending and contact stress values between proposal methods and original ISO standard. However, before the ISO standard is changed, the paper recommends that allowable stress numbers published in ISO 6336-5 are reviewed because the mechanisms that initiate bending and contact fatigue have also changed and these require updating.


AIP Advances ◽  
2019 ◽  
Vol 9 (5) ◽  
pp. 055029
Author(s):  
Yan Guo ◽  
Tingfeng Ma ◽  
Ji Wang ◽  
Bin Huang ◽  
Heung Soo Kim

2016 ◽  
Vol 10 (1) ◽  
pp. JAMDSM0015-JAMDSM0015 ◽  
Author(s):  
Yao WANG ◽  
Chao LIN ◽  
Zhiqin CAI ◽  
Chao HUANG

2019 ◽  
Vol 66 (5) ◽  
pp. 2214-2218 ◽  
Author(s):  
Wei Jiang ◽  
Mingxiang Wang ◽  
Huaisheng Wang ◽  
Dongli Zhang

2019 ◽  
Vol 16 (2) ◽  
pp. 401-414
Author(s):  
Chao Lin ◽  
Wenjie Wei ◽  
Shuang Wang ◽  
Xiguang Xia ◽  
Qingkun Xin

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