Effect of Fabrication Methods on The Density and Impact Strength of Brake Pad Composites for Railway Application

Railway brake pads, which are essential components of braking systems, are commonly manufactured using metallic or composite materials. Nevertheless, these technologies come with disadvantages such as a restricted lifespan and heightened intricacy during installation. The objective of this pro...

Full description

Saved in:
Bibliographic Details
Main Authors: Deni Fajar, Fitriyana, Muhammad Bustanul, Aripin, Saeful, Dimyati, Rusiyanto, Rusiyanto, Rahmat Doni, Widodo, Aldias, Bahatmaka, Samsudin, Anis, Wirawan, Sumbodo, Da Silva Guterres, Natalino Fonseca
Format: Article
Language:English
Published: INTI International University 2023
Subjects:
Online Access:http://eprints.intimal.edu.my/1890/1/joit2023_22.pdf
http://eprints.intimal.edu.my/1890/
http://ipublishing.intimal.edu.my/joint.html
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: INTI International University
Language: English
id my-inti-eprints.1890
record_format eprints
spelling my-inti-eprints.18902024-01-31T02:11:51Z http://eprints.intimal.edu.my/1890/ Effect of Fabrication Methods on The Density and Impact Strength of Brake Pad Composites for Railway Application Deni Fajar, Fitriyana Muhammad Bustanul, Aripin Saeful, Dimyati Rusiyanto, Rusiyanto Rahmat Doni, Widodo Aldias, Bahatmaka Samsudin, Anis Wirawan, Sumbodo Da Silva Guterres, Natalino Fonseca T Technology (General) TA Engineering (General). Civil engineering (General) TF Railroad engineering and operation Railway brake pads, which are essential components of braking systems, are commonly manufactured using metallic or composite materials. Nevertheless, these technologies come with disadvantages such as a restricted lifespan and heightened intricacy during installation. The objective of this project was to create composite brake pad materials to minimize the utilization of metal brake pads and reduce the demand for imports. The study entailed fabricating brake pad samples with a composite material. The study produced railway brake pad samples by combining epoxy, hardener, rice husk, aluminium oxide, and iron oxide. The components were blended and subsequently put into a mold, where they were compacted to form compression molding products. The specimens were divided into sections to comply with the density and impact testing requirements set by American Society for Testing and Materials (ASTM). The obtained products were evaluated by a Charpy impact test and an electronic density meter. The study demonstrates that the manufacturing procedure has a substantial effect on the density of composite specimens. The hand layup result exhibits a density of 1.230 g/cm3 , the composite specimen produced using compression molding possesses a density of 1.696 g/cm3 . The compression molding technique results in a 38% increase in density compared to items made using the hand lay-up method. Applying high pressure and temperature during compression hot molding improves the bonding between fibers and the matrix, reduces the presence of empty spaces, and enhances the overall strength of the structure. The impact strength of compression molded items exhibits a 27% enhancement in comparison to hand lay-up products. INTI International University 2023-12 Article PeerReviewed text en cc_by_4 http://eprints.intimal.edu.my/1890/1/joit2023_22.pdf Deni Fajar, Fitriyana and Muhammad Bustanul, Aripin and Saeful, Dimyati and Rusiyanto, Rusiyanto and Rahmat Doni, Widodo and Aldias, Bahatmaka and Samsudin, Anis and Wirawan, Sumbodo and Da Silva Guterres, Natalino Fonseca (2023) Effect of Fabrication Methods on The Density and Impact Strength of Brake Pad Composites for Railway Application. Journal of Innovation and Technology, 2023 (22). pp. 1-8. ISSN 2805-5179 http://ipublishing.intimal.edu.my/joint.html
institution INTI International University
building INTI Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider INTI International University
content_source INTI Institutional Repository
url_provider http://eprints.intimal.edu.my
language English
topic T Technology (General)
TA Engineering (General). Civil engineering (General)
TF Railroad engineering and operation
spellingShingle T Technology (General)
TA Engineering (General). Civil engineering (General)
TF Railroad engineering and operation
Deni Fajar, Fitriyana
Muhammad Bustanul, Aripin
Saeful, Dimyati
Rusiyanto, Rusiyanto
Rahmat Doni, Widodo
Aldias, Bahatmaka
Samsudin, Anis
Wirawan, Sumbodo
Da Silva Guterres, Natalino Fonseca
Effect of Fabrication Methods on The Density and Impact Strength of Brake Pad Composites for Railway Application
description Railway brake pads, which are essential components of braking systems, are commonly manufactured using metallic or composite materials. Nevertheless, these technologies come with disadvantages such as a restricted lifespan and heightened intricacy during installation. The objective of this project was to create composite brake pad materials to minimize the utilization of metal brake pads and reduce the demand for imports. The study entailed fabricating brake pad samples with a composite material. The study produced railway brake pad samples by combining epoxy, hardener, rice husk, aluminium oxide, and iron oxide. The components were blended and subsequently put into a mold, where they were compacted to form compression molding products. The specimens were divided into sections to comply with the density and impact testing requirements set by American Society for Testing and Materials (ASTM). The obtained products were evaluated by a Charpy impact test and an electronic density meter. The study demonstrates that the manufacturing procedure has a substantial effect on the density of composite specimens. The hand layup result exhibits a density of 1.230 g/cm3 , the composite specimen produced using compression molding possesses a density of 1.696 g/cm3 . The compression molding technique results in a 38% increase in density compared to items made using the hand lay-up method. Applying high pressure and temperature during compression hot molding improves the bonding between fibers and the matrix, reduces the presence of empty spaces, and enhances the overall strength of the structure. The impact strength of compression molded items exhibits a 27% enhancement in comparison to hand lay-up products.
format Article
author Deni Fajar, Fitriyana
Muhammad Bustanul, Aripin
Saeful, Dimyati
Rusiyanto, Rusiyanto
Rahmat Doni, Widodo
Aldias, Bahatmaka
Samsudin, Anis
Wirawan, Sumbodo
Da Silva Guterres, Natalino Fonseca
author_facet Deni Fajar, Fitriyana
Muhammad Bustanul, Aripin
Saeful, Dimyati
Rusiyanto, Rusiyanto
Rahmat Doni, Widodo
Aldias, Bahatmaka
Samsudin, Anis
Wirawan, Sumbodo
Da Silva Guterres, Natalino Fonseca
author_sort Deni Fajar, Fitriyana
title Effect of Fabrication Methods on The Density and Impact Strength of Brake Pad Composites for Railway Application
title_short Effect of Fabrication Methods on The Density and Impact Strength of Brake Pad Composites for Railway Application
title_full Effect of Fabrication Methods on The Density and Impact Strength of Brake Pad Composites for Railway Application
title_fullStr Effect of Fabrication Methods on The Density and Impact Strength of Brake Pad Composites for Railway Application
title_full_unstemmed Effect of Fabrication Methods on The Density and Impact Strength of Brake Pad Composites for Railway Application
title_sort effect of fabrication methods on the density and impact strength of brake pad composites for railway application
publisher INTI International University
publishDate 2023
url http://eprints.intimal.edu.my/1890/1/joit2023_22.pdf
http://eprints.intimal.edu.my/1890/
http://ipublishing.intimal.edu.my/joint.html
_version_ 1789946101006073856