Contribution on the Optimization of the Spur Gears Design Process Using Software Application

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This paper illustrates a method, in conformity with Standards [10 - 14], regarding gear design. The optimization process using this method consists in reducing the number of design steps and also in its accuracy. This method takes into consideration the functionality of gears. This method, called also the operational method [1], involves 10 kinematic and dynamic restrictions, that provide a direct calculus of gears, without any iterations. The standard methods require successive iterations, until the appropriate result is obtained. The comparison between these methods is presented below. The kinematic and dynamic restrictions, being defined as mathematical functions, could easily be implemented in a programming language.

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117-122

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October 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] O. Radulescu, M. Popovici, Optimal Design of machine elements, Technical Publishing House, Bucharest, Romania, (2003).

Google Scholar

[2] F. Litvin, Gear geometry and applied theory, Second edition, New York, (2004).

Google Scholar

[3] Gh. Radulescu, Gh. Miloiu, Design guidebook for machine construction, Technical Publishing House, Bucharest, Romania, (1980).

Google Scholar

[4] Gh. Paizi, N. Stere, Machine elements and mechanisms, Didactical and Pedagogical Publishing House, Bucharest, Romania, (1977).

Google Scholar

[5] I. Draghici, A. Jula, Machine elements – Problems, Didactical and Pedagogical Publishing House, Bucharest, Romania, (1980).

Google Scholar

[6] G. Ruggieri, Paolo Righettini, Ruote dentate, Publishing Group Italia, Milano, Italia, (2003).

Google Scholar

[7] J. M. Miralles, J. Fontanet, Engranatges, Jordi Martinez Miralles Edita, Barcelona, Spain, (2012).

Google Scholar

[8] I. D. Filipoiu, A. Tudor, Design guidebook for mechanical transmissions, Publishing House Bren, Bucharest, Romania, (2006).

Google Scholar

[9] M. Berzal, C. Barajas, Auto-learning system for calculation for spur and helical gears using ISO 6336, Investigating Group of Manufacturing Engineering and Mechanical Trials, Technical University of Madrid, Spain.

Google Scholar

[10] International Standard ISO 6336 – 1.

Google Scholar

[11] International Standard ISO 6336 – 2.

Google Scholar

[12] International Standard ISO 6336 – 3.

Google Scholar

[13] International Standard ISO 6336 – 5.

Google Scholar

[14] International Standard ISO 6336 – 6.

Google Scholar