Bearing performance and damage characteristics of rein-infused thermoplastic 3D woven composites bolted joints

This paper presents a comprehensive study on the single-bolt single-shear (SBSS) and double-bolt single-shear (DBSS) lap joint performance of resin-infused thermoplastic 3D fiber-reinforced composite (FRC) in on-axis ((Formula presented.) and (Formula presented.)) and off-axis ((Formula presented.))...

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Main Authors: Shah, S.Z.H., Megat-Yusoff, P.S.M., Sharif, T., Sajid, Z., Hussnain, S.M., Choudhry, R.S.
Format: Article
Published: 2023
Online Access:http://scholars.utp.edu.my/id/eprint/38074/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85173468531&doi=10.1002%2fpc.27802&partnerID=40&md5=e084eaf8963812a89f290079b53cde65
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spelling oai:scholars.utp.edu.my:380742023-12-11T02:55:38Z http://scholars.utp.edu.my/id/eprint/38074/ Bearing performance and damage characteristics of rein-infused thermoplastic 3D woven composites bolted joints Shah, S.Z.H. Megat-Yusoff, P.S.M. Sharif, T. Sajid, Z. Hussnain, S.M. Choudhry, R.S. This paper presents a comprehensive study on the single-bolt single-shear (SBSS) and double-bolt single-shear (DBSS) lap joint performance of resin-infused thermoplastic 3D fiber-reinforced composite (FRC) in on-axis ((Formula presented.) and (Formula presented.)) and off-axis ((Formula presented.)) configurations. The bearing performance and failure mechanisms are compared with thermoset 3D-FRC. The resin-infused thermoplastic 3D-FRC bolted joint shows improved bearing performance in terms of higher ultimate bearing strength, stiffness loss strength, and reduced damage severity than its thermoset counterpart. Additionally, this paper presents a detailed study on the intermediate and final failure mechanisms, obtained from scanning electron microscopy of the interrupted and ultimate bearing tests, to understand damage progression in SBSS and BDSS lap joints at the submicron level. The major damage characteristics of a thermoplastic 3D-FRC bolted joint include plastic deformation and plastic kinking at the hole front tip, which improve the bearing capacity and reduce stress concentration, damage severity, and its deleterious effects. Highlights: Single-bolt and double-bolt joint performances of 3D woven composites Failure investigation of different joint configurations and fiber orientations Effect of matrix toughness on the bearing performance of 3D woven composites Progressive damage development and failure modes of 3D woven composite joints. © 2023 Society of Plastics Engineers. 2023 Article NonPeerReviewed Shah, S.Z.H. and Megat-Yusoff, P.S.M. and Sharif, T. and Sajid, Z. and Hussnain, S.M. and Choudhry, R.S. (2023) Bearing performance and damage characteristics of rein-infused thermoplastic 3D woven composites bolted joints. Polymer Composites. https://www.scopus.com/inward/record.uri?eid=2-s2.0-85173468531&doi=10.1002%2fpc.27802&partnerID=40&md5=e084eaf8963812a89f290079b53cde65 10.1002/pc.27802 10.1002/pc.27802 10.1002/pc.27802
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description This paper presents a comprehensive study on the single-bolt single-shear (SBSS) and double-bolt single-shear (DBSS) lap joint performance of resin-infused thermoplastic 3D fiber-reinforced composite (FRC) in on-axis ((Formula presented.) and (Formula presented.)) and off-axis ((Formula presented.)) configurations. The bearing performance and failure mechanisms are compared with thermoset 3D-FRC. The resin-infused thermoplastic 3D-FRC bolted joint shows improved bearing performance in terms of higher ultimate bearing strength, stiffness loss strength, and reduced damage severity than its thermoset counterpart. Additionally, this paper presents a detailed study on the intermediate and final failure mechanisms, obtained from scanning electron microscopy of the interrupted and ultimate bearing tests, to understand damage progression in SBSS and BDSS lap joints at the submicron level. The major damage characteristics of a thermoplastic 3D-FRC bolted joint include plastic deformation and plastic kinking at the hole front tip, which improve the bearing capacity and reduce stress concentration, damage severity, and its deleterious effects. Highlights: Single-bolt and double-bolt joint performances of 3D woven composites Failure investigation of different joint configurations and fiber orientations Effect of matrix toughness on the bearing performance of 3D woven composites Progressive damage development and failure modes of 3D woven composite joints. © 2023 Society of Plastics Engineers.
format Article
author Shah, S.Z.H.
Megat-Yusoff, P.S.M.
Sharif, T.
Sajid, Z.
Hussnain, S.M.
Choudhry, R.S.
spellingShingle Shah, S.Z.H.
Megat-Yusoff, P.S.M.
Sharif, T.
Sajid, Z.
Hussnain, S.M.
Choudhry, R.S.
Bearing performance and damage characteristics of rein-infused thermoplastic 3D woven composites bolted joints
author_facet Shah, S.Z.H.
Megat-Yusoff, P.S.M.
Sharif, T.
Sajid, Z.
Hussnain, S.M.
Choudhry, R.S.
author_sort Shah, S.Z.H.
title Bearing performance and damage characteristics of rein-infused thermoplastic 3D woven composites bolted joints
title_short Bearing performance and damage characteristics of rein-infused thermoplastic 3D woven composites bolted joints
title_full Bearing performance and damage characteristics of rein-infused thermoplastic 3D woven composites bolted joints
title_fullStr Bearing performance and damage characteristics of rein-infused thermoplastic 3D woven composites bolted joints
title_full_unstemmed Bearing performance and damage characteristics of rein-infused thermoplastic 3D woven composites bolted joints
title_sort bearing performance and damage characteristics of rein-infused thermoplastic 3d woven composites bolted joints
publishDate 2023
url http://scholars.utp.edu.my/id/eprint/38074/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85173468531&doi=10.1002%2fpc.27802&partnerID=40&md5=e084eaf8963812a89f290079b53cde65
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