Numerical and Theoretical Analysis of a Spur Gear Using Composite and Conventional Materials

A spur gear is one of the most common forms of precision cylindrical gear. In the industry, reducing the weight of gears while keeping their useful properties has become an even more pressing challenge. As a result, the investigators have made many attempts to reduce the weight of the gears. Despite...

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Main Authors: Jwan Mohammed, Dlair Ramadan
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2022-07-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_175182_81d5281daf9335fd97cbe930863d66c7.pdf
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author Jwan Mohammed
Dlair Ramadan
author_facet Jwan Mohammed
Dlair Ramadan
author_sort Jwan Mohammed
collection DOAJ
description A spur gear is one of the most common forms of precision cylindrical gear. In the industry, reducing the weight of gears while keeping their useful properties has become an even more pressing challenge. As a result, the investigators have made many attempts to reduce the weight of the gears. Despite these efforts, the problem still requires more research. This study presented a spur gear's modeling and finite element analysis using different materials. A three-dimensional spur gear was designed, modeled, and simulated using ANSYS software. Five different materials, including two conventional materials (stainless steel and copper alloy) and three different composite materials, including 50% carbon fibers reinforced in epoxy resin, 1.5% filler containing acetal, i.e., Graphene Reinforced Acetal,  and glass-filled polyamide. Composites were fabricated by varying the graphene quantity in Acetal nanocomposites. The spur gear stress was calculated theoretically using the Hertzian equation, and FEM was analyzed using ANSYS 14.0 under limited loading conditions and rotational speed. Although the obtained results showed that both methods were comparable, there was a significant difference between the two methods when 50% carbon fibers reinforced in epoxy resin matrix were used, which is Hertzian analysis was 250.13 MPa. In contrast, this result was reduced up to 152.13 MPa in FEM. The study concluded that among the different presented materials, 50% carbon fibers reinforced in epoxy resin matrix were the optimal material for spur gear fabrication due to their high strength and low density. Hence, the spur gear material can be replaced by 50% carbon fibers reinforced in the epoxy resin matrix.
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spelling doaj.art-1e7b805fb3bd44ef8cc5f6be2ad109452024-01-31T14:27:53ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582022-07-01407996100510.30684/etj.2022.133641.1198175182Numerical and Theoretical Analysis of a Spur Gear Using Composite and Conventional MaterialsJwan Mohammed0Dlair Ramadan1Department of Petroleum and Mining, Faculty of Engineering, Tishk International University, Erbil-KRG, IraqDepartment of Technical Mechanical and Energy Engineering, Erbil Technical Engineering College, Erbil Polytechnic University, Erbil, IraqA spur gear is one of the most common forms of precision cylindrical gear. In the industry, reducing the weight of gears while keeping their useful properties has become an even more pressing challenge. As a result, the investigators have made many attempts to reduce the weight of the gears. Despite these efforts, the problem still requires more research. This study presented a spur gear's modeling and finite element analysis using different materials. A three-dimensional spur gear was designed, modeled, and simulated using ANSYS software. Five different materials, including two conventional materials (stainless steel and copper alloy) and three different composite materials, including 50% carbon fibers reinforced in epoxy resin, 1.5% filler containing acetal, i.e., Graphene Reinforced Acetal,  and glass-filled polyamide. Composites were fabricated by varying the graphene quantity in Acetal nanocomposites. The spur gear stress was calculated theoretically using the Hertzian equation, and FEM was analyzed using ANSYS 14.0 under limited loading conditions and rotational speed. Although the obtained results showed that both methods were comparable, there was a significant difference between the two methods when 50% carbon fibers reinforced in epoxy resin matrix were used, which is Hertzian analysis was 250.13 MPa. In contrast, this result was reduced up to 152.13 MPa in FEM. The study concluded that among the different presented materials, 50% carbon fibers reinforced in epoxy resin matrix were the optimal material for spur gear fabrication due to their high strength and low density. Hence, the spur gear material can be replaced by 50% carbon fibers reinforced in the epoxy resin matrix.https://etj.uotechnology.edu.iq/article_175182_81d5281daf9335fd97cbe930863d66c7.pdfcontact stressescarbon fibers reinforced in an epoxy resin matrixfiller contained acetal glass-filled polyamidespur gears
spellingShingle Jwan Mohammed
Dlair Ramadan
Numerical and Theoretical Analysis of a Spur Gear Using Composite and Conventional Materials
Engineering and Technology Journal
contact stresses
carbon fibers reinforced in an epoxy resin matrix
filler contained acetal glass-filled polyamide
spur gears
title Numerical and Theoretical Analysis of a Spur Gear Using Composite and Conventional Materials
title_full Numerical and Theoretical Analysis of a Spur Gear Using Composite and Conventional Materials
title_fullStr Numerical and Theoretical Analysis of a Spur Gear Using Composite and Conventional Materials
title_full_unstemmed Numerical and Theoretical Analysis of a Spur Gear Using Composite and Conventional Materials
title_short Numerical and Theoretical Analysis of a Spur Gear Using Composite and Conventional Materials
title_sort numerical and theoretical analysis of a spur gear using composite and conventional materials
topic contact stresses
carbon fibers reinforced in an epoxy resin matrix
filler contained acetal glass-filled polyamide
spur gears
url https://etj.uotechnology.edu.iq/article_175182_81d5281daf9335fd97cbe930863d66c7.pdf
work_keys_str_mv AT jwanmohammed numericalandtheoreticalanalysisofaspurgearusingcompositeandconventionalmaterials
AT dlairramadan numericalandtheoreticalanalysisofaspurgearusingcompositeandconventionalmaterials