Thin-walled composite tubes using fillers subjected to quasistatic axial compression

Automotive industry; Crashworthiness; Crushing; Energy absorption; Fillers; Glass industry; Loads (forces); Palm oil; Thin walled structures; Tubes (components); Wood; Wood products; Crashworthiness parameters; Different geometry; Material characterizations; Maximum crushing loads; Quasi-static load...

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Main Authors: Al-Qrimli H.F., Mahdi F.A., Ismail F.B., Alzorqi I.S.
Other Authors: 30367473200
Format: Conference Paper
Published: Institute of Physics Publishing 2023
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spelling my.uniten.dspace-225572023-05-29T14:01:59Z Thin-walled composite tubes using fillers subjected to quasistatic axial compression Al-Qrimli H.F. Mahdi F.A. Ismail F.B. Alzorqi I.S. 30367473200 36979751000 58027086700 56013409600 Automotive industry; Crashworthiness; Crushing; Energy absorption; Fillers; Glass industry; Loads (forces); Palm oil; Thin walled structures; Tubes (components); Wood; Wood products; Crashworthiness parameters; Different geometry; Material characterizations; Maximum crushing loads; Quasi-static loads; Quasistatic axial compression; Specific energy absorption; Thin-walled composites; Engineering education; Composites; Compression; Fillers; Samples; Tubes It has been demonstrated that composites are lightweight, fatigue resistant and easily melded, a seemingly attractive alternative to metals. However, there has been no widespread switch from metals to composites in the automotive sector. This is because there are a number of technical issues relating to the use of composite materials that still need to be resolved including accurate material characterization, manufacturing and joining process. The total of 36 specimens have been fabricated using the fibre-glass and resin (epoxy) with a two different geometries (circular and corrugated) each one will be filled with five types of filler (Rice Husk, Wood Chips, Aluminium Chips, Coconut Fibre, Palm Oil Fibre) all these type will be compared with empty Tubes for circular and corrugated in order to comprehend the crashworthiness parameters (initial failure load, average load, maximum crushing load, load ratio, energy absorption, specific energy absorption, volumetric energy absorption, crushing force efficiency and crush strain relation) which are considered very sufficient parameters in the design of automotive industry parts. All the tests have been done using the "INSTRON Universal machine" which is computerized in order to simply give a high precision to the collection of the results, along with the use of quasi-static load to test and observe the behaviour of the fabricated specimens. � Published under licence by IOP Publishing Ltd. Final 2023-05-29T06:01:59Z 2023-05-29T06:01:59Z 2015 Conference Paper 10.1088/1757-899X/78/1/012024 2-s2.0-84926443343 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84926443343&doi=10.1088%2f1757-899X%2f78%2f1%2f012024&partnerID=40&md5=db9e703483e35c39132ac96eeefa6500 https://irepository.uniten.edu.my/handle/123456789/22557 78 1 12024 All Open Access, Bronze, Green Institute of Physics Publishing Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Automotive industry; Crashworthiness; Crushing; Energy absorption; Fillers; Glass industry; Loads (forces); Palm oil; Thin walled structures; Tubes (components); Wood; Wood products; Crashworthiness parameters; Different geometry; Material characterizations; Maximum crushing loads; Quasi-static loads; Quasistatic axial compression; Specific energy absorption; Thin-walled composites; Engineering education; Composites; Compression; Fillers; Samples; Tubes
author2 30367473200
author_facet 30367473200
Al-Qrimli H.F.
Mahdi F.A.
Ismail F.B.
Alzorqi I.S.
format Conference Paper
author Al-Qrimli H.F.
Mahdi F.A.
Ismail F.B.
Alzorqi I.S.
spellingShingle Al-Qrimli H.F.
Mahdi F.A.
Ismail F.B.
Alzorqi I.S.
Thin-walled composite tubes using fillers subjected to quasistatic axial compression
author_sort Al-Qrimli H.F.
title Thin-walled composite tubes using fillers subjected to quasistatic axial compression
title_short Thin-walled composite tubes using fillers subjected to quasistatic axial compression
title_full Thin-walled composite tubes using fillers subjected to quasistatic axial compression
title_fullStr Thin-walled composite tubes using fillers subjected to quasistatic axial compression
title_full_unstemmed Thin-walled composite tubes using fillers subjected to quasistatic axial compression
title_sort thin-walled composite tubes using fillers subjected to quasistatic axial compression
publisher Institute of Physics Publishing
publishDate 2023
_version_ 1806424221806493696
score 13.214268