Please use this identifier to cite or link to this item: http://dspace.unimap.edu.my:80/xmlui/handle/123456789/30910
Title: The effect of loading rates and particle geometry on compressive properties of polypropylene/zinc oxide nanocomposites: Experimental and numerical prediction
Authors: Mohd Firdaus, Omar
Hazizan, Md Akil
Zainal Arifin, Ahmad
Shahrom, Mahmud, Dr.
lendew_firdaus@yahoo.com
hazizan@eng.usm.my
zainal@eng.usm.my
shahromx@usm.my
Keywords: Compressive properties
Particle geometries
Nanocomposites
Polypropylene/zinc oxide
Issue Date: Jan-2012
Publisher: Society of Plastics Engineers
Citation: Polymer Composites, vol. 33(1), 2012, pages 99-108
Abstract: Compressive properties, of particulate filled polymer matrix composites, are affected (to a certain extent) by the geometry of the particles, as well as the loadingrates. Therefore, this article presents the results on the compressive properties of polypropylene/zinc oxide nanocomposites across strain rates from 10 -2 to 10 -3 s -1. The specimens were tested using a Universal Testing Machine for static loading and a conventional Split Hopkinson Pressure Bar apparatus for dynamic loading. Results show that the yield stress and 2.5% flow stress, of both PP/ZnO nanocomposites, showed a positive increment with increasing strain rates. However, the yield strain shows a contradictory pattern, where it decreased with increasing strain rates. PP/ZnO-white seal recorded higher strain rate sensitivity, dissipation energy, stiffness, and strength properties, than that of PP/ZnO-pharmaceutical, over a wide range of strain rates investigated. Interestingly, the Eyring theory almost agreed with the experimental results. Overall, based on the experimental and numerical results, we do believe that particle geometry, as well as strain rates, has a significant influence on the compressive properties of polypropylene/zinc oxide nanocomposites specimens.
Description: Link to publisher's homepage at http://www.4spe.org/
URI: http://onlinelibrary.wiley.com/doi/10.1002/pc.21253/abstract;jsessionid=2413A625B4CB4D0503B7D0E13EF12625.f02t02
http://dspace.unimap.edu.my/123456789/30910
ISSN: 0272-8397
Appears in Collections:School of Materials Engineering (Articles)



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