The DMA, TG/DTA and FT-IR Characteristics of Wood Polymer Composites

Author:

Koyun Ahmet1,Ahlatcioglu Esma1,Erdogan Duygu Ceylan1,Ipek Yeliz Koca1

Affiliation:

1. Yildiz Technical University

Abstract

Wood chips and polymer composites are effectively used in the industrial products. It is important to establish a relationship between mechanical strength and processability in extruder of these composites. Especially, the most important factor is to determine the time-dependent strength. Although many short-term values were obtained via normal mechanical experiments, very little effort has been spent in order to estimate the long-term behavior of polymer. Composites were prepared with processed and unprocessed wood chips. Pretreatment of wood chips were carried out by using hydrochloric acid (HCl) and water. The products were prepared with different ratios of mixtures which contain wood chips and high density polyethylene (HDPE) grains. The long-term mechanical behavior and viscoelastic behavior of these composites were analyzed using Dynamic Mechanic Analyzer (DMA) test equipment. The effect of composite content and pretreatment method of wood chips on mechanical strength of wood plastic composites (WPCs) were determined. The relationship among the composite content, preparation method of wood chips, DMA and TG/DTA test results were tried to establish. FT-IR spectrums of the beginning materials and the composites are also examined in order to determine the chemical bonds of these materials.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference4 articles.

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2. E.P. Plueddemann: Silane Coupling Agents, Plenum Press, New York, (1982), p: 1-28.

3. A. Wechsler, S. Hiziroglu, A.A. Ballerini: Some of the Properties of Wood Plastic Composites, Proceedings of the 51st International Convention of Society of Wood Science and Technology, CHILE, November 10-12, (2008).

4. A.J. Nuñez, J.M. Kenny, M.M. Reboredo, M.I. Aranguren, N.E. Marcovich: Thermal and Dynamic Mechanical Characterization of Polypropylene-Wood Flour Composites, Polymer Engineering And Science, Vol. 42(4), (2002).

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