Investigation of Joining Methods of Honeycomb Composite Panels Used in Structural Elements of Aircraft Cabin Units

The design, material selection, manufacture and assembly of aircraft structural elements are critical issues in the aviation industry. This study aims to optimize the selection of joining methods of aircraft honeycomb panels by considering strength, cost, and weight parameters. Accordingly, panel...

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Main Authors: Sena Kabave Kılınçarslan, Aslan Kahraman Erhal, Şeyma Korkmaz, M. Hüseyin Çetin
Format: Article
Language:English
Published: Hezarfen Aeronautics and Space Technologies Institue 2021-01-01
Series:Havacılık ve Uzay Teknolojileri Dergisi
Subjects:
Online Access:http://jast.hho.edu.tr/index.php/JAST/article/view/438
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spelling doaj-8ef4116d8aed4fd280b901b160a9510f2021-02-04T12:10:11ZengHezarfen Aeronautics and Space Technologies InstitueHavacılık ve Uzay Teknolojileri Dergisi1304-04482021-01-0114199117Investigation of Joining Methods of Honeycomb Composite Panels Used in Structural Elements of Aircraft Cabin UnitsSena Kabave Kılınçarslan0https://orcid.org/0000-0001-7302-4554Aslan Kahraman Erhal1https://orcid.org/0000-0003-0915-8579Şeyma Korkmaz2https://orcid.org/0000-0002-6871-980XM. Hüseyin Çetin3https://orcid.org/0000-0003-0429-5507Karabuk UniversityKarabuk UniversityKarabuk UniversityKarabuk UniversityThe design, material selection, manufacture and assembly of aircraft structural elements are critical issues in the aviation industry. This study aims to optimize the selection of joining methods of aircraft honeycomb panels by considering strength, cost, and weight parameters. Accordingly, panel type, panel thickness and joining methods were determined as input parameters, and fracture force, displacement, cost, and weight as output parameters. Tenon-mortise, double-sided bracket, single-sided bracket, and extrusion methods were investigated for L and T-type panels. Panel thicknesses were determined as 10 mm and 22 mm according to standards. Tensile test and finite element analysis were applied to the samples to examine their mechanical behavior. The weight and cost of the panels were determined by the process analysis. The obtained findings were optimized according to multi-criteria decision making and response surface analysis methods. In the optimization model, maximization of tensile strength and minimization of displacement, cost and weight was determined as the target function. At the end of the study, the optimum thickness value for both types of panels was determined as 22 mm, and the optimum joining method was tenon-mortise.http://jast.hho.edu.tr/index.php/JAST/article/view/438honeycomb compositejoining methodstenon-mortisebracketextrusionoptimization
collection DOAJ
language English
format Article
sources DOAJ
author Sena Kabave Kılınçarslan
Aslan Kahraman Erhal
Şeyma Korkmaz
M. Hüseyin Çetin
spellingShingle Sena Kabave Kılınçarslan
Aslan Kahraman Erhal
Şeyma Korkmaz
M. Hüseyin Çetin
Investigation of Joining Methods of Honeycomb Composite Panels Used in Structural Elements of Aircraft Cabin Units
Havacılık ve Uzay Teknolojileri Dergisi
honeycomb composite
joining methods
tenon-mortise
bracket
extrusion
optimization
author_facet Sena Kabave Kılınçarslan
Aslan Kahraman Erhal
Şeyma Korkmaz
M. Hüseyin Çetin
author_sort Sena Kabave Kılınçarslan
title Investigation of Joining Methods of Honeycomb Composite Panels Used in Structural Elements of Aircraft Cabin Units
title_short Investigation of Joining Methods of Honeycomb Composite Panels Used in Structural Elements of Aircraft Cabin Units
title_full Investigation of Joining Methods of Honeycomb Composite Panels Used in Structural Elements of Aircraft Cabin Units
title_fullStr Investigation of Joining Methods of Honeycomb Composite Panels Used in Structural Elements of Aircraft Cabin Units
title_full_unstemmed Investigation of Joining Methods of Honeycomb Composite Panels Used in Structural Elements of Aircraft Cabin Units
title_sort investigation of joining methods of honeycomb composite panels used in structural elements of aircraft cabin units
publisher Hezarfen Aeronautics and Space Technologies Institue
series Havacılık ve Uzay Teknolojileri Dergisi
issn 1304-0448
publishDate 2021-01-01
description The design, material selection, manufacture and assembly of aircraft structural elements are critical issues in the aviation industry. This study aims to optimize the selection of joining methods of aircraft honeycomb panels by considering strength, cost, and weight parameters. Accordingly, panel type, panel thickness and joining methods were determined as input parameters, and fracture force, displacement, cost, and weight as output parameters. Tenon-mortise, double-sided bracket, single-sided bracket, and extrusion methods were investigated for L and T-type panels. Panel thicknesses were determined as 10 mm and 22 mm according to standards. Tensile test and finite element analysis were applied to the samples to examine their mechanical behavior. The weight and cost of the panels were determined by the process analysis. The obtained findings were optimized according to multi-criteria decision making and response surface analysis methods. In the optimization model, maximization of tensile strength and minimization of displacement, cost and weight was determined as the target function. At the end of the study, the optimum thickness value for both types of panels was determined as 22 mm, and the optimum joining method was tenon-mortise.
topic honeycomb composite
joining methods
tenon-mortise
bracket
extrusion
optimization
url http://jast.hho.edu.tr/index.php/JAST/article/view/438
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AT aslankahramanerhal investigationofjoiningmethodsofhoneycombcompositepanelsusedinstructuralelementsofaircraftcabinunits
AT seymakorkmaz investigationofjoiningmethodsofhoneycombcompositepanelsusedinstructuralelementsofaircraftcabinunits
AT mhuseyincetin investigationofjoiningmethodsofhoneycombcompositepanelsusedinstructuralelementsofaircraftcabinunits
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