17 The Influence of Pressure Angle of Spur Gears …
219
7. Dadhanlya, K.D., Hirpar, K.P., Vyas, K.M.: Effect of pressure angle on bending stress and
deformation of asymmetric involute spur gear using FEA. IOSR J. Eng. 2(4), 616–620 (2012)
8. Oda, S., Koide, T., Tottori, U., Sawa, Y.: Effect of standard pressure angle on the bending
fatigue strength of helical gears. Int. J. Fatigue 31, 802–807 (1988)
9. AGMA 13FTM03. Analysis of gear root forms: a review of designs, standards and manufacturing methods for root forms in cylindrical gears. USA, (2013)
10. Shukla, A.K., Sarda, A.: Optimization of bending stress of Spur Gear using response surface
optimization technique. Int. J. Adv. Res. Innov. Ideas Educ. 4(2), 317–320 (2018)
11. Shukla, A.K., Sarda, A.: A review of bending stress on spur gear using DOE technique. Int. J.
Adv. Res. Innov. Ideas Educ. 4(2), 313–316 (2018)
12. ISO 6336-3:2006, Calculation of load capacity of sour and helical gears: part 3: calculation of
tooth bending strength. 2nd edn. UK (2006)
13. ANSI/AGMA 908-B89, Geometry factors for determining the pitting resistance and bending
strength of spur, helical and herringbone gear teeth. USA (1989)
14. Dontyne Systems, Gear production suite brochure [EB/OL]. http://www.dontynesystems.com/
gear-design-software/. 14 Sept 2011
15. Palmer, D., Fish, M.: Evaluation of methods for calculating effects of tip relief on transmission
error, noise and stress in loaded spur gears. Gear Technol. 1, 56–67 (2012)
16. Lisle, T.: A Finite Element Approach for Validating Gear Contact and Root Bending Stress.
Newcastle University, UK (2013)
17. Lisle, T.: Finite element stress analysis for advanced aerospace gears. In: BGA gears 2011
conference, Shrivenham, UK (2011)
219
7. Dadhanlya, K.D., Hirpar, K.P., Vyas, K.M.: Effect of pressure angle on bending stress and
deformation of asymmetric involute spur gear using FEA. IOSR J. Eng. 2(4), 616–620 (2012)
8. Oda, S., Koide, T., Tottori, U., Sawa, Y.: Effect of standard pressure angle on the bending
fatigue strength of helical gears. Int. J. Fatigue 31, 802–807 (1988)
9. AGMA 13FTM03. Analysis of gear root forms: a review of designs, standards and manufacturing methods for root forms in cylindrical gears. USA, (2013)
10. Shukla, A.K., Sarda, A.: Optimization of bending stress of Spur Gear using response surface
optimization technique. Int. J. Adv. Res. Innov. Ideas Educ. 4(2), 317–320 (2018)
11. Shukla, A.K., Sarda, A.: A review of bending stress on spur gear using DOE technique. Int. J.
Adv. Res. Innov. Ideas Educ. 4(2), 313–316 (2018)
12. ISO 6336-3:2006, Calculation of load capacity of sour and helical gears: part 3: calculation of
tooth bending strength. 2nd edn. UK (2006)
13. ANSI/AGMA 908-B89, Geometry factors for determining the pitting resistance and bending
strength of spur, helical and herringbone gear teeth. USA (1989)
14. Dontyne Systems, Gear production suite brochure [EB/OL]. http://www.dontynesystems.com/
gear-design-software/. 14 Sept 2011
15. Palmer, D., Fish, M.: Evaluation of methods for calculating effects of tip relief on transmission
error, noise and stress in loaded spur gears. Gear Technol. 1, 56–67 (2012)
16. Lisle, T.: A Finite Element Approach for Validating Gear Contact and Root Bending Stress.
Newcastle University, UK (2013)
17. Lisle, T.: Finite element stress analysis for advanced aerospace gears. In: BGA gears 2011
conference, Shrivenham, UK (2011)
