Investigation of the Mechanical Properties of Bagasse Fiber-Reinforced Epoxy Composite using Taguchi and Response Surface Methodology

Fiber-reinforced polymer composites are widely used in various applications because of their mechanical properties and ease of manufacture. Fiber-reinforced plastics are being developed using synthetic fiber and natural fibers of bagasse, palm biomass, etc. In this study, the mechanical strength of...

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Main Authors: Karuppusamy Kanthavel, Ramanaicker Palanisamy, Somasundaram Vivek
Format: Article
Language:English
Published: North Carolina State University 2015-05-01
Series:BioResources
Subjects:
Online Access:http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_10_2_Kanthavel_3749_Mechanical_Properties_Bagasse
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author Karuppusamy Kanthavel
Ramanaicker Palanisamy
Somasundaram Vivek
author_facet Karuppusamy Kanthavel
Ramanaicker Palanisamy
Somasundaram Vivek
author_sort Karuppusamy Kanthavel
collection DOAJ
description Fiber-reinforced polymer composites are widely used in various applications because of their mechanical properties and ease of manufacture. Fiber-reinforced plastics are being developed using synthetic fiber and natural fibers of bagasse, palm biomass, etc. In this study, the mechanical strength of bagasse fiber-reinforced epoxy composite was investigated using a Design of Experiment technique. The parameters of fiber volume percentage, alkali concentration, and treatment time with three levels were considered, and an L27 design matrix was developed using the Taguchi orthogonal array. The bagasse was first treated with sodium hydroxide solution (NaOH); subsequently, 27 specimens were developed for experimental investigation. The mechanical strength of newly developed bagasse fiber-reinforced epoxy composite was investigated using a three-point bending testing machine. The flexural strength was calculated using three-point bending strength for length versus load combination. The analysis and optimization was done using the Taguchi method, and a second-order mathematical model was developed using response surface methodology (RSM). A significant performance improvement in the flexural strength of the newly developed composite was found.
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spelling doaj.art-b4e480f636b34c95a2813ec90a66ee062022-12-22T03:11:22ZengNorth Carolina State UniversityBioResources1930-21261930-21262015-05-011023749375610.15376/biores.10.2.3749-3756Investigation of the Mechanical Properties of Bagasse Fiber-Reinforced Epoxy Composite using Taguchi and Response Surface MethodologyKaruppusamy Kanthavel0Ramanaicker Palanisamy1Somasundaram Vivek2Anna University Regional Centre Coimbatore; IndiaAssistant Professor , Mechanical Engineering, JKKM College of Technology , India; IndiaAnna University Regional Centre Coimbatore; IndiaFiber-reinforced polymer composites are widely used in various applications because of their mechanical properties and ease of manufacture. Fiber-reinforced plastics are being developed using synthetic fiber and natural fibers of bagasse, palm biomass, etc. In this study, the mechanical strength of bagasse fiber-reinforced epoxy composite was investigated using a Design of Experiment technique. The parameters of fiber volume percentage, alkali concentration, and treatment time with three levels were considered, and an L27 design matrix was developed using the Taguchi orthogonal array. The bagasse was first treated with sodium hydroxide solution (NaOH); subsequently, 27 specimens were developed for experimental investigation. The mechanical strength of newly developed bagasse fiber-reinforced epoxy composite was investigated using a three-point bending testing machine. The flexural strength was calculated using three-point bending strength for length versus load combination. The analysis and optimization was done using the Taguchi method, and a second-order mathematical model was developed using response surface methodology (RSM). A significant performance improvement in the flexural strength of the newly developed composite was found.http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_10_2_Kanthavel_3749_Mechanical_Properties_BagasseEpoxy compositeFlexural strengthBagasse fiberTaguchiResponse surface methodology
spellingShingle Karuppusamy Kanthavel
Ramanaicker Palanisamy
Somasundaram Vivek
Investigation of the Mechanical Properties of Bagasse Fiber-Reinforced Epoxy Composite using Taguchi and Response Surface Methodology
BioResources
Epoxy composite
Flexural strength
Bagasse fiber
Taguchi
Response surface methodology
title Investigation of the Mechanical Properties of Bagasse Fiber-Reinforced Epoxy Composite using Taguchi and Response Surface Methodology
title_full Investigation of the Mechanical Properties of Bagasse Fiber-Reinforced Epoxy Composite using Taguchi and Response Surface Methodology
title_fullStr Investigation of the Mechanical Properties of Bagasse Fiber-Reinforced Epoxy Composite using Taguchi and Response Surface Methodology
title_full_unstemmed Investigation of the Mechanical Properties of Bagasse Fiber-Reinforced Epoxy Composite using Taguchi and Response Surface Methodology
title_short Investigation of the Mechanical Properties of Bagasse Fiber-Reinforced Epoxy Composite using Taguchi and Response Surface Methodology
title_sort investigation of the mechanical properties of bagasse fiber reinforced epoxy composite using taguchi and response surface methodology
topic Epoxy composite
Flexural strength
Bagasse fiber
Taguchi
Response surface methodology
url http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_10_2_Kanthavel_3749_Mechanical_Properties_Bagasse
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AT somasundaramvivek investigationofthemechanicalpropertiesofbagassefiberreinforcedepoxycompositeusingtaguchiandresponsesurfacemethodology