Please use this identifier to cite or link to this item: http://dspace.unimap.edu.my:80/xmlui/handle/123456789/34096
Title: Modelling of multi-axial ultimate elastic wall stress (UEWS) test for glass fibre reinforced epoxy (GRE) composite pipes
Authors: Mohd Shukry, Abdul Majid, Dr.
Mohd Afendi, Rojan, Dr.
Ruslizam, Daud, Dr.
Nasrul Amri, Mohd Amin, Dr.
Azizul, Mohamad
Cheng, Ee Meng, Dr.
Gibson, A. G.
shukry@unimap.edu.my
afendirojan@unimap.edu.my
ruslizam@unimap.edu.my
nasrulamri.mohdamin@unimap.edu.my
azizul@unimap.edu.my
emcheng@unimap.edu.my
Keywords: Composite pipes
Crack density
Multiaxial loadings
Stress-strain response
Ultimate elastic wall stress (UEWS)
Issue Date: 2013
Publisher: Trans Tech Publications
Citation: Applied Mechanics and Materials, vol. 367, 2013, pages 113-117
Abstract: This paper describes the modeling of multiaxial ultimate elastic wall stress (UEWS) at room temperature for glass fibre reinforced epoxy (GRE) composite pipes. The model developed, predicts the stress-strain response caused by the combined, static and cyclic of UEWS loading taking into effects of transverse matrix cracking within the laminates. The procedure, although not a standard method, seems to provide a good alternative to the current raw materials' re-qualification procedure delineated in ISO 14692 through ASTM D2992. The effective transverse and shear modulus of the lamina due to increasing presence of transverse matrix cracking were estimated. Classical laminate analysis was then applied to compute the corresponding ply properties as a function of increasing stress and strain. The model shows a good agreement with the experimental results of multiaxial UEWS tests on ±55o filament wound glass-reinforced epoxy pipes.
Description: Link to publisher's homepage at http://www.ttp.net/
URI: http://www.scientific.net/AMM.367.113
http://dspace.unimap.edu.my:80/dspace/handle/123456789/34096
ISBN: 978-303785788-5
ISSN: 1660-9336
Appears in Collections:Cheng Ee Meng, Dr.
School of Mechatronic Engineering (Articles)
Mohd Shukry Abdul Majid, Assoc. Prof. Ir. Dr.
Ruslizam Daud, Assoc Prof. Ir. Dr.
Nasrul Amri Mohd Amin, Assoc. Prof. Ir. Ts. Dr.
Azizul Mohamad
Mohd Afendi Bin Rojan, Associated Professor Dr.



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