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Thermal and mechanical properties of epoxy composites reinforced by a natural hydrophobic sand
Authors:G. Sui  S. Jana  A. Salehi-khojin  S. Neema  W. H. Zhong  H. Chen  Q. Huo
Affiliation:1. Department of Mechanical Engineering and Applied Mechanics, North Dakota State University, Fargo, North Dakota 58105

The Key Laboratory of Beijing City on Preparation and Processing of Novel Polymer Materials, Beijing University of Chemical Technology, Beijing 100029, China;2. Department of Mechanical Engineering and Applied Mechanics, North Dakota State University, Fargo, North Dakota 58105;3. Center of Nanoscience and Nanotechnology, University of Central Florida, Orlando, Florida 32826

Abstract:If a low weight percentage of crude fine fillers can improve properties of polymer materials directly without complicated chemical treatment process involved, it will be significant for many industrial applications. Our previous study indicated that a kind of Cancun natural sand could be an effective filler material for polymer composites. In this current work, the epoxy composites reinforced by this kind of natural sand particles were prepared and thermal and mechanical properties of the composites containing up to 5 wt % of the sand particles were characterized. Results showed that the highest flexural strength appears in the epoxy composite containing 1 wt % sand particles. A damage model was used to interpret the flexural properties, which showed an acceptable agreement with the experimental results. The glass transition temperature, high temperature storage modulus, and dimensional stability of the sand/epoxy composites monotonically increased with the addition of the sand particles. The sand particle/epoxy composites also displayed a noticeable enhancement in thermal conductivity. Theoretical analysis showed that in addition to conduction, other heat transport mechanisms played roles in the improved heat transmission through the composites. As a natural porous micron-scale material, Cancun sand has the potential for applications in cost-effective composites with enhanced mechanical and thermal properties. © 2008 Wiley Periodicals, Inc. J Appl Polym Sci, 2008
Keywords:sand particle  epoxy resin  composites  thermal property  flexural property
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