Please use this identifier to cite or link to this item: http://dspace.unimap.edu.my:80/xmlui/handle/123456789/34097
Title: Effects of winding angles in biaxial ultimate elastic wall stress (UEWS) tests of glass gibre reinforced epoxy (GRE) composite pipes
Authors: Mohd Shukry, Abdul Majid, Dr.
Mohd Afendi, Rojan, Dr.
Ruslizam, Daud, Dr.
Gibson, A. G.
M., Hekman
shukry@unimap.edu.my
afendirojan@unimap.edu.my
ruslizam@unimap.edu.my
Keywords: Biaxial loading
Filament winding
Glass fibre reinforced epoxy pipes
Ultimate elastic wall stress (UEWS)
Winding angles
Issue Date: 2013
Publisher: Trans Tech Publications
Citation: Advanced Materials Research, vol. 795, 2013, pages 424-428
Abstract: This paper presents an experimental investigation into the influence of winding angles in multiaxial ultimate elastic wall stress (UEWS) tests of glass-fibre reinforced epoxy (GRE) composite pipes. Currently, UEWS test is one of the alternative methods used to the 1000-hour test procedure detailed in ASTM D2992 for the detection of manufacturing changes and reconfirmation of the design basis of composite pipes. A stress-strain response was obtained for each winding angle and the results then compared with those computed through conventional laminate theory. Experimental data showed that the UEWS point varies for each winding angle, and the difference becomes even more pronounced, especially when the angles deviated from the ideal ±55°. It is also concluded that the UEWS stresses, which represent the onset of non-linearity were very much dependent on the transverse and shear stress responses, and these values were found to be consistent with the predicted values from the commonly used Tsai Wu failure criterion.
Description: Link to publisher's homepage at http://www.ttp.net/
URI: http://www.scientific.net/AMR.795.424
http://dspace.unimap.edu.my:80/dspace/handle/123456789/34097
ISBN: 978-303785811-0
ISSN: 1022-6680
Appears in Collections:School of Mechatronic Engineering (Articles)
Mohd Shukry Abdul Majid, Assoc. Prof. Ir. Dr.
Mohd Afendi Bin Rojan, Associated Professor Dr.
Ruslizam Daud, Assoc Prof. Ir. Dr.



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