Geometry Definition and Contact Analysis of Spherical Involute Straight Bevel Gears

A practical application of the spherical involute surface to the forged straight bevel gears is provided and demonstrated in this work. Conjugate (pure involute) theoretical surfaces are developed from the input design parameters. The surfaces are modified to suit the actual application (automotive...

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Format: Article
Language:English
Published: Iran University of Science & Technology 2012-06-01
Series:International Journal of Industrial Engineering and Production Research
Subjects:
Online Access:http://ijiepr.iust.ac.ir/browse.php?a_code=A-10-1-135&slc_lang=en&sid=1
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collection DOAJ
description A practical application of the spherical involute surface to the forged straight bevel gears is provided and demonstrated in this work. Conjugate (pure involute) theoretical surfaces are developed from the input design parameters. The surfaces are modified to suit the actual application (automotive differential). The unloaded (or low load) tooth contact analysis of modified surfaces is performed to obtain the prediction of the contact pattern. In order to verify the procedure and predictions, actual straight bevel gears are forged by using provided surfaces, and their contact pattern is compared to the predictions. Influence of the misalignments on the gear performance is investigated in order to provide more robust design.
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spelling doaj.art-4824b2674e7a4bff88b6a9982a2da5dc2022-12-22T03:32:43ZengIran University of Science & TechnologyInternational Journal of Industrial Engineering and Production Research2008-48892345-363X2012-06-01232101111Geometry Definition and Contact Analysis of Spherical Involute Straight Bevel Gears01 A practical application of the spherical involute surface to the forged straight bevel gears is provided and demonstrated in this work. Conjugate (pure involute) theoretical surfaces are developed from the input design parameters. The surfaces are modified to suit the actual application (automotive differential). The unloaded (or low load) tooth contact analysis of modified surfaces is performed to obtain the prediction of the contact pattern. In order to verify the procedure and predictions, actual straight bevel gears are forged by using provided surfaces, and their contact pattern is compared to the predictions. Influence of the misalignments on the gear performance is investigated in order to provide more robust design.http://ijiepr.iust.ac.ir/browse.php?a_code=A-10-1-135&slc_lang=en&sid=1spherical involute surface forged straight bevel gears unloaded tooth contact analysisgear misalignment
spellingShingle Geometry Definition and Contact Analysis of Spherical Involute Straight Bevel Gears
International Journal of Industrial Engineering and Production Research
spherical involute surface
forged straight bevel gears
unloaded tooth contact analysis
gear misalignment
title Geometry Definition and Contact Analysis of Spherical Involute Straight Bevel Gears
title_full Geometry Definition and Contact Analysis of Spherical Involute Straight Bevel Gears
title_fullStr Geometry Definition and Contact Analysis of Spherical Involute Straight Bevel Gears
title_full_unstemmed Geometry Definition and Contact Analysis of Spherical Involute Straight Bevel Gears
title_short Geometry Definition and Contact Analysis of Spherical Involute Straight Bevel Gears
title_sort geometry definition and contact analysis of spherical involute straight bevel gears
topic spherical involute surface
forged straight bevel gears
unloaded tooth contact analysis
gear misalignment
url http://ijiepr.iust.ac.ir/browse.php?a_code=A-10-1-135&slc_lang=en&sid=1