Solutions for contact problems applied to bevel gears

The article presents solutions to flat contact problems applied to straight-tooth bevel gears, considering both linear and nonlinear dependencies between elastic displacements of the teeth and the resulting stresses. Maximum contact stresses and contact patch dimensions are determined, accounting fo...

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Main Authors: Savenkov Oleg, Voronenko Serhii, Sadovoy Oleksiy, Poltorak Anastasiya
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/38/e3sconf_greenenergy2024_08008.pdf
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author Savenkov Oleg
Voronenko Serhii
Sadovoy Oleksiy
Poltorak Anastasiya
author_facet Savenkov Oleg
Voronenko Serhii
Sadovoy Oleksiy
Poltorak Anastasiya
author_sort Savenkov Oleg
collection DOAJ
description The article presents solutions to flat contact problems applied to straight-tooth bevel gears, considering both linear and nonlinear dependencies between elastic displacements of the teeth and the resulting stresses. Maximum contact stresses and contact patch dimensions are determined, accounting for both linear and nonlinear relationships between elastic deformations of the teeth and stresses. These solutions are based on a novel contact strength theory. It is demonstrated that the load capacity of bevel gears, considering contact stresses and nonlinear dependencies between elastic deformations and stresses, increases by 1.113 times.
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publishDate 2024-01-01
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spelling doaj.art-074d3777ec2147f5b732cc777dda3a8f2024-04-12T07:40:18ZengEDP SciencesE3S Web of Conferences2267-12422024-01-015080800810.1051/e3sconf/202450808008e3sconf_greenenergy2024_08008Solutions for contact problems applied to bevel gearsSavenkov Oleg0Voronenko Serhii1Sadovoy Oleksiy2Poltorak Anastasiya3Admiral Makarov National University of ShipbuildingKherson State Marine AcademyMykolayiv National Agrarian UniversityMykolayiv National Agrarian UniversityThe article presents solutions to flat contact problems applied to straight-tooth bevel gears, considering both linear and nonlinear dependencies between elastic displacements of the teeth and the resulting stresses. Maximum contact stresses and contact patch dimensions are determined, accounting for both linear and nonlinear relationships between elastic deformations of the teeth and stresses. These solutions are based on a novel contact strength theory. It is demonstrated that the load capacity of bevel gears, considering contact stresses and nonlinear dependencies between elastic deformations and stresses, increases by 1.113 times.https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/38/e3sconf_greenenergy2024_08008.pdf
spellingShingle Savenkov Oleg
Voronenko Serhii
Sadovoy Oleksiy
Poltorak Anastasiya
Solutions for contact problems applied to bevel gears
E3S Web of Conferences
title Solutions for contact problems applied to bevel gears
title_full Solutions for contact problems applied to bevel gears
title_fullStr Solutions for contact problems applied to bevel gears
title_full_unstemmed Solutions for contact problems applied to bevel gears
title_short Solutions for contact problems applied to bevel gears
title_sort solutions for contact problems applied to bevel gears
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/38/e3sconf_greenenergy2024_08008.pdf
work_keys_str_mv AT savenkovoleg solutionsforcontactproblemsappliedtobevelgears
AT voronenkoserhii solutionsforcontactproblemsappliedtobevelgears
AT sadovoyoleksiy solutionsforcontactproblemsappliedtobevelgears
AT poltorakanastasiya solutionsforcontactproblemsappliedtobevelgears