Komposit poliester/serat gelas: pengaruh jumlah lapisan serat terhadap sifat mekaniknya

Technology of polymers and composites progressively expand which had been found of various new composite types with excellence and also it’s excess. Currently, one of the composite materials was used in many industrial of automotive as vehicle body especially for components that needed light materia...

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Main Authors: NPG Suardana, IW Surata
Format: Article
Language:English
Published: Universitas Udayana 2012-11-01
Series:Jurnal Energi Dan Manufaktur
Subjects:
Online Access:https://ojs.unud.ac.id/index.php/jem/article/view/2245
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spelling doaj-aef9271b6c5e4c29b4a4070a73515d2d2020-11-25T01:31:26ZengUniversitas UdayanaJurnal Energi Dan Manufaktur2302-52552541-53282012-11-012245Komposit poliester/serat gelas: pengaruh jumlah lapisan serat terhadap sifat mekaniknyaNPG SuardanaIW SurataTechnology of polymers and composites progressively expand which had been found of various new composite types with excellence and also it’s excess. Currently, one of the composite materials was used in many industrial of automotive as vehicle body especially for components that needed light material with high strength and high corrosive resistance is Glass Fiber Reinforced Polymer (GFRP). This research investigated whether the addition of fiber layer can increase flexural strength of the composite, and how many the maximum fiber layer or maximum fiber fraction of weight. The experiment used unsaturated polyester Resin type of Yukalac 157 BQTN-EX as matrix, short glass fiber sheet with random orientation (chopped random mat) type of MAT 300 as reinforcement, and methyl etil keton peroxide (MEKPO) as hardener, respectively. The specimens were made by press hand lay-up and then formed and underwent the flexural testing according to standard of ASTM D 790 - 03. From the result and data analysis, it can be concluded that the weight fraction and fiber volume fraction increased with fiber layer. These resulted in the increase of flexural modulus and strength of GFRP. The specific strength and specific flexural modulus had relatively constant value, because the increase of flexural strength will be followed by increased its density. The number of maximum fiber layer in 1 mmcomposite in thickness was 3 layers (MAT 300), which approached the maximum fiber fraction of weight (Wf = 58.69%, 60% maximum).https://ojs.unud.ac.id/index.php/jem/article/view/2245Polymer composite, fibreglass, flexural strength, flexural modulus, strain
collection DOAJ
language English
format Article
sources DOAJ
author NPG Suardana
IW Surata
spellingShingle NPG Suardana
IW Surata
Komposit poliester/serat gelas: pengaruh jumlah lapisan serat terhadap sifat mekaniknya
Jurnal Energi Dan Manufaktur
Polymer composite, fibreglass, flexural strength, flexural modulus, strain
author_facet NPG Suardana
IW Surata
author_sort NPG Suardana
title Komposit poliester/serat gelas: pengaruh jumlah lapisan serat terhadap sifat mekaniknya
title_short Komposit poliester/serat gelas: pengaruh jumlah lapisan serat terhadap sifat mekaniknya
title_full Komposit poliester/serat gelas: pengaruh jumlah lapisan serat terhadap sifat mekaniknya
title_fullStr Komposit poliester/serat gelas: pengaruh jumlah lapisan serat terhadap sifat mekaniknya
title_full_unstemmed Komposit poliester/serat gelas: pengaruh jumlah lapisan serat terhadap sifat mekaniknya
title_sort komposit poliester/serat gelas: pengaruh jumlah lapisan serat terhadap sifat mekaniknya
publisher Universitas Udayana
series Jurnal Energi Dan Manufaktur
issn 2302-5255
2541-5328
publishDate 2012-11-01
description Technology of polymers and composites progressively expand which had been found of various new composite types with excellence and also it’s excess. Currently, one of the composite materials was used in many industrial of automotive as vehicle body especially for components that needed light material with high strength and high corrosive resistance is Glass Fiber Reinforced Polymer (GFRP). This research investigated whether the addition of fiber layer can increase flexural strength of the composite, and how many the maximum fiber layer or maximum fiber fraction of weight. The experiment used unsaturated polyester Resin type of Yukalac 157 BQTN-EX as matrix, short glass fiber sheet with random orientation (chopped random mat) type of MAT 300 as reinforcement, and methyl etil keton peroxide (MEKPO) as hardener, respectively. The specimens were made by press hand lay-up and then formed and underwent the flexural testing according to standard of ASTM D 790 - 03. From the result and data analysis, it can be concluded that the weight fraction and fiber volume fraction increased with fiber layer. These resulted in the increase of flexural modulus and strength of GFRP. The specific strength and specific flexural modulus had relatively constant value, because the increase of flexural strength will be followed by increased its density. The number of maximum fiber layer in 1 mmcomposite in thickness was 3 layers (MAT 300), which approached the maximum fiber fraction of weight (Wf = 58.69%, 60% maximum).
topic Polymer composite, fibreglass, flexural strength, flexural modulus, strain
url https://ojs.unud.ac.id/index.php/jem/article/view/2245
work_keys_str_mv AT npgsuardana kompositpoliesterseratgelaspengaruhjumlahlapisanseratterhadapsifatmekaniknya
AT iwsurata kompositpoliesterseratgelaspengaruhjumlahlapisanseratterhadapsifatmekaniknya
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