ANALYSIS OF SOLID AND HOLLOW SHAFT USING MOD-GOODMAN METHOD

Authors

  • Musa M. Allafia , Osama M. AlMakhzom Higher Institution of Marine Science Technologies – AL khoms, Libya , Author

DOI:

https://doi.org/10.65405/.v10i37.612

Keywords:

Power Shaft, Hollow Shaft, Solid Shaft, Mod_Goodman Method, Fatigu

Abstract

Power shafts are the most crucial components of a machine, and they are frequently subject to fatigue
due to variable external loads. The goal of this research is to design solid and hollow shafts with constant load
and torque in order to anticipate the percentage reduction in shaft mass and change in diameter. The modified
Goodman approach was used to calculate the shaft's diameter, which was then compared to the maximum shear
stress method. The results show that hollow shafts have a 28% lower mass than solid shafts with the same
material and strength, while hollow shafts have a 5% higher outer diameter. When using maximu

Downloads

Download data is not yet available.

References

[1] Osgood CC. Fatigue design, Oxford: Pergamon press; 1982.

[2] Stephen K. Preliminary Design of a Power Transmission Shaft Under

Fatigue using ASME Coad.2018.

[3] R.A. Gujar, and others. Shaft Design Under Fatigue Loading by Using

Modified Goodman Method.2013.

[4] Deepan M. and others. Optimization of Shaft Design Under Fatigue

Loading Using Goodman Method.2011.

[5] Rakesh and others. Design and Analysis of Hollow and Solid Shaft.

2018.

[6] Shigley. Mechanical Engineering Design.2015.

[7] A. Fierek, and others. Analysis of shaft selection in terms of stiffness and

mass.2020.

[8] Steven R. Schmid. Fundamentals of Machine Elements.2014.

Downloads

Published

2025-11-25

How to Cite

ANALYSIS OF SOLID AND HOLLOW SHAFT USING MOD-GOODMAN METHOD. (2025). Comprehensive Journal of Science, 10(37), 2367-2375. https://doi.org/10.65405/.v10i37.612