Shear test characterization of 3d printed polyamide reinforced carbon fiber composites

The issue of delamination occurring on PACF materials is a structural application failure due to poor mechanical strength. The bonding process of composite materials between layers using fused deposition modeling (FDM) printing affects the tensile strength of the material. The main objective of this...

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Main Authors: Nisa Naima Khalid,, Fatin Zahidah Awang Adi,, Nabilah Afiqah Mohd Radzuan,, Abu Bakar Sulong,
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2023
Online Access:http://journalarticle.ukm.my/22124/1/jk_14.pdf
http://journalarticle.ukm.my/22124/
https://www.ukm.my/jkukm/volume-3502-2023/
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spelling my-ukm.journal.221242023-08-18T01:55:16Z http://journalarticle.ukm.my/22124/ Shear test characterization of 3d printed polyamide reinforced carbon fiber composites Nisa Naima Khalid, Fatin Zahidah Awang Adi, Nabilah Afiqah Mohd Radzuan, Abu Bakar Sulong, The issue of delamination occurring on PACF materials is a structural application failure due to poor mechanical strength. The bonding process of composite materials between layers using fused deposition modeling (FDM) printing affects the tensile strength of the material. The main objective of this study was to study the shear strength of polyamide reinforced carbon composite (PACF) materials by using shear test method and to study the effect of fractured or delamination surfaces during shear testing. In this study, PACF material was printed using FDM technique through Ultimate S3 machine. A total of 20 printed PACF specimens underwent a semi-overlapping adhesion process using Loctite E-20HP epoxy adhesive which required curing for 24 hours at room temperature. Shear test methods were performed on PACF composite specimens using Universal Testing Machine. Furthermore, PACF samples were conducted experiments to determine the physical properties of the composites of the material as well as Scanning Electron Microscopy (SEM) experiments through fractured or eliminated surfaces. Based on the results obtained, the PACF material has a high shear tensile strength compared to that of epoxy adhesives with an average rate of 1.6 MPa respectively. This is may due to the low curing temperature and the thick epoxy layer. It was observed that the FDM printing method produces a porous print layer that can facilitate delamination to occur. Penerbit Universiti Kebangsaan Malaysia 2023 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/22124/1/jk_14.pdf Nisa Naima Khalid, and Fatin Zahidah Awang Adi, and Nabilah Afiqah Mohd Radzuan, and Abu Bakar Sulong, (2023) Shear test characterization of 3d printed polyamide reinforced carbon fiber composites. Jurnal Kejuruteraan, 35 (2). pp. 431-436. ISSN 0128-0198 https://www.ukm.my/jkukm/volume-3502-2023/
institution Universiti Kebangsaan Malaysia
building Tun Sri Lanang Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kebangsaan Malaysia
content_source UKM Journal Article Repository
url_provider http://journalarticle.ukm.my/
language English
description The issue of delamination occurring on PACF materials is a structural application failure due to poor mechanical strength. The bonding process of composite materials between layers using fused deposition modeling (FDM) printing affects the tensile strength of the material. The main objective of this study was to study the shear strength of polyamide reinforced carbon composite (PACF) materials by using shear test method and to study the effect of fractured or delamination surfaces during shear testing. In this study, PACF material was printed using FDM technique through Ultimate S3 machine. A total of 20 printed PACF specimens underwent a semi-overlapping adhesion process using Loctite E-20HP epoxy adhesive which required curing for 24 hours at room temperature. Shear test methods were performed on PACF composite specimens using Universal Testing Machine. Furthermore, PACF samples were conducted experiments to determine the physical properties of the composites of the material as well as Scanning Electron Microscopy (SEM) experiments through fractured or eliminated surfaces. Based on the results obtained, the PACF material has a high shear tensile strength compared to that of epoxy adhesives with an average rate of 1.6 MPa respectively. This is may due to the low curing temperature and the thick epoxy layer. It was observed that the FDM printing method produces a porous print layer that can facilitate delamination to occur.
format Article
author Nisa Naima Khalid,
Fatin Zahidah Awang Adi,
Nabilah Afiqah Mohd Radzuan,
Abu Bakar Sulong,
spellingShingle Nisa Naima Khalid,
Fatin Zahidah Awang Adi,
Nabilah Afiqah Mohd Radzuan,
Abu Bakar Sulong,
Shear test characterization of 3d printed polyamide reinforced carbon fiber composites
author_facet Nisa Naima Khalid,
Fatin Zahidah Awang Adi,
Nabilah Afiqah Mohd Radzuan,
Abu Bakar Sulong,
author_sort Nisa Naima Khalid,
title Shear test characterization of 3d printed polyamide reinforced carbon fiber composites
title_short Shear test characterization of 3d printed polyamide reinforced carbon fiber composites
title_full Shear test characterization of 3d printed polyamide reinforced carbon fiber composites
title_fullStr Shear test characterization of 3d printed polyamide reinforced carbon fiber composites
title_full_unstemmed Shear test characterization of 3d printed polyamide reinforced carbon fiber composites
title_sort shear test characterization of 3d printed polyamide reinforced carbon fiber composites
publisher Penerbit Universiti Kebangsaan Malaysia
publishDate 2023
url http://journalarticle.ukm.my/22124/1/jk_14.pdf
http://journalarticle.ukm.my/22124/
https://www.ukm.my/jkukm/volume-3502-2023/
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score 13.214268