Study regarding the structural response of standard cylindrical roller bearings using ANSYS and MESYS

Bearings are manufactured in a wide variety of types and sizes especially with a single row of rollers, two rows of rollers or more, with cages or roller beside roller. Researches carried out by authors in this paper have followed a comparative analysis between a standard cylindrical roller bearings...

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Main Authors: Puşcaşu Alin Marian, Lupescu Octavian, Bădănac Ana
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201817805012
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spelling doaj-c4ef4ae73a2c4ab6ac7ae589add6de6b2021-02-02T01:29:29ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011780501210.1051/matecconf/201817805012matecconf_imanee2018_05012Study regarding the structural response of standard cylindrical roller bearings using ANSYS and MESYSPuşcaşu Alin MarianLupescu OctavianBădănac AnaBearings are manufactured in a wide variety of types and sizes especially with a single row of rollers, two rows of rollers or more, with cages or roller beside roller. Researches carried out by authors in this paper have followed a comparative analysis between a standard cylindrical roller bearings design and a prototype design using finite element method software's like ANSYS and MESYS. ANSYS is commonly used and enjoyed by an extended use in the structural areas, for analysis. ANSYS it consists of three main phases: Pre-processing, conducting or importing of the solid model system that are to be analyzed, solid meshing design in finite elements, implementation of conditions and loads at the limit, Processing, numeric solving of the characteristic equations behavior of the system and getting the solution, Post-processing, viewing the results in order to analyses system reaction and identification of areas with critical applications. The purpose of the study was to collect data's using two different software's and after to compare them with mathematical results. Using the ANSYS in this purpose it was able to analyses the design of the structure of the cylindrical roller bearing in detail.https://doi.org/10.1051/matecconf/201817805012
collection DOAJ
language English
format Article
sources DOAJ
author Puşcaşu Alin Marian
Lupescu Octavian
Bădănac Ana
spellingShingle Puşcaşu Alin Marian
Lupescu Octavian
Bădănac Ana
Study regarding the structural response of standard cylindrical roller bearings using ANSYS and MESYS
MATEC Web of Conferences
author_facet Puşcaşu Alin Marian
Lupescu Octavian
Bădănac Ana
author_sort Puşcaşu Alin Marian
title Study regarding the structural response of standard cylindrical roller bearings using ANSYS and MESYS
title_short Study regarding the structural response of standard cylindrical roller bearings using ANSYS and MESYS
title_full Study regarding the structural response of standard cylindrical roller bearings using ANSYS and MESYS
title_fullStr Study regarding the structural response of standard cylindrical roller bearings using ANSYS and MESYS
title_full_unstemmed Study regarding the structural response of standard cylindrical roller bearings using ANSYS and MESYS
title_sort study regarding the structural response of standard cylindrical roller bearings using ansys and mesys
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Bearings are manufactured in a wide variety of types and sizes especially with a single row of rollers, two rows of rollers or more, with cages or roller beside roller. Researches carried out by authors in this paper have followed a comparative analysis between a standard cylindrical roller bearings design and a prototype design using finite element method software's like ANSYS and MESYS. ANSYS is commonly used and enjoyed by an extended use in the structural areas, for analysis. ANSYS it consists of three main phases: Pre-processing, conducting or importing of the solid model system that are to be analyzed, solid meshing design in finite elements, implementation of conditions and loads at the limit, Processing, numeric solving of the characteristic equations behavior of the system and getting the solution, Post-processing, viewing the results in order to analyses system reaction and identification of areas with critical applications. The purpose of the study was to collect data's using two different software's and after to compare them with mathematical results. Using the ANSYS in this purpose it was able to analyses the design of the structure of the cylindrical roller bearing in detail.
url https://doi.org/10.1051/matecconf/201817805012
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AT lupescuoctavian studyregardingthestructuralresponseofstandardcylindricalrollerbearingsusingansysandmesys
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