Analysis of Bending Stress and Maximum Torsion on an Axis for Power Transmission

Authors

  • Ivan Espinoza Universidad Autónoma del Estado de Hidalgo

DOI:

https://doi.org/10.29057/escs.v6i12.4022

Keywords:

Maximum stress in bending, maximum torsional shear stress, shaft, strength

Abstract

This work presents the process to determine the maximum stress in bending and the maximum torsional shear stress in a power transmission shaft. The study was made considering that the loads applied on the shaft are stationary and this do not produce cyclical variations over time. The importance of calculate the bending and torsion stress lies in establishing the necessary requirements for strength and rigidity in the element and prevent a failure compromising its functionality.

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References

R. L. Norton, Diseño de Máquinas, México: Prentice Hall, 2011.

R. G. Budynas y J. K. Nisbet, Diseño en ingeniería mecánia de Shigley, México: McGraw-Hill, 2012.

R. L. Mott, Diseño de Elementos de Máquinas, México: Pearson, 2006.

F. P. B. E. Johnston, J. T. DeWolf y D. F. Mazurek, Mecánica de Materiales, México: McGraw-Hill, 2013.

R. C. Hibbeler, Mecánica de Materiales, México: Pearson, 2011.

R. L. Mott, Resistencia de Materiales, México: Pearson, 2009.

J. M. Gere y B. J. Goodno, Mecánica de Materiales, México: Cengage Learning, 2009.

J. L. Meriam y L. G. Kraige, Mecánica para ingenieros. Estática, España: Reverté, 1999.

F. P. Beer, J. E Russell Johnston, D. F. Mazurek y E. R. Eisenberg, mecánica Vectorial para Ingenieros. Estática, México: McGraw-Hill, 2010.

Published

2019-07-05

How to Cite

Espinoza, I. (2019). Analysis of Bending Stress and Maximum Torsion on an Axis for Power Transmission. Ingenio Y Conciencia Boletín Científico De La Escuela Superior Ciudad Sahagún, 6(12), 74–79. https://doi.org/10.29057/escs.v6i12.4022