A Concise Review of the Components and Properties of Wood–Plastic Composites

Author:

Mitaľová Zuzana1ORCID,Mitaľ Dušan1,Berladir Khrystyna12

Affiliation:

1. Department of Automobile and Manufacturing Technologies, Faculty of Manufacturing Technologies, Technical University of Košice, Bayerova 1, 08001 Prešov, Slovakia

2. Department of Applied Materials Science and Technology of Constructional Materials, Sumy State University, Rymskogo-Korsakova 2, 40007 Sumy, Ukraine

Abstract

This article summarizes findings in the field of the history, composition, and mechanical properties of WPCs (wood–plastic composites) formed by combining two homogeneous substances, i.e., a polymer matrix with cellulose fibers in a certain ratio (with the addition of additives). In relation to a wide range of applied natural reinforcements in composites, it focuses on wood as a fundamental representative of lignocellulosic fibers. It elucidates the concept of wood flour, the criteria for its selection, methods of storage, morphological characteristics, and similar aspects. The presence of wood in the plastic matrix reduces the material cost while increasing the stiffness. Matrix selection is influenced by the processing temperature (Tmax = 200 °C) due to the susceptibility of cellulose fibers to thermal degradation. Thermoplastics and selected biodegradable polymers can be applied as matrices. The article also includes information on applied additives such as coupling agents, lubricants, biocides, UV stabilizers, pigments, etc., and the mechanical/utility properties of WPC materials. The most common application of WPCs is in automotive sector, construction, aerospace, and structural applications. The potential biodegradability and lower cost of applications featuring composite materials with natural reinforcements motivated us to delve into this type of work.

Funder

Scientific Grant Agency of the Ministry of Education, Science, Research and Sport of the Slovak Republic

Publisher

MDPI AG

Reference59 articles.

1. Klyosov, A.A. (2007). Wood-Plastic Composites, John Wiley & Sons. [1st ed.].

2. Niska, K.O., and Sain, M. (2008). Wood-Polymer Composites, Woodhead Publishing.

3. Use of recycled plastic in wood plastic composites—A review;Najafi;Waste Manag.,2013

4. Hutyrová, Z. (2012). Príspevok k Riešeniu Problematiky Trieskového Obrábania Kompozitných Materiálov na Báze WPC. [Ph.D. Thesis, Technical University of Košice].

5. Nicholas, D.D. (1982). Wood Deterioration and Its Prevention by Preservative Treatments: Volume 1: Degradation and Protection of Wood, Syracuse University Press.

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