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  4. Properties of Particle Boards Containing Polymer Waste
 
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Properties of Particle Boards Containing Polymer Waste

Type
Journal article
Language
English
Date issued
2023
Author
Kuliński, Marcin
Walkiewicz, Joanna 
Dukarska, Dorota 
Dziurka, Dorota 
Mirski, Radosław 
Faculty
Wydział Leśny i Technologii Drewna
Journal
Materials
ISSN
1996-1944
DOI
10.3390/ma16134774
Web address
https://www.mdpi.com/1996-1944/16/13/4774
Volume
16
Number
13
Pages from-to
art. 4774
Abstract (EN)
Nowadays, a significant increase in interest in renewable energy sources can be observed. Wind farms have been one of the solutions representing this trend for many years. One of the important elements of windmills is the blades. The data indicate that what to do with the blades after their use is a global problem, and so it is important to find a way to recycle them. Hence, this work aimed to use these blades in the production of wood-based materials. Two fractions of a fragmented blade were used for the tests: a small one and large one. Boards characterized by densities of 650 kg/m3 and 700 kg/m3 were produced, in which the assumed substitution of the wood material with a polymer was 20% or 40%. Mechanical properties such as bending strength (MOR), modulus of elasticity (MOE), and internal bond strength (IB) were investigated. The 2S65 variant achieved the highest static bending strength and a modulus of elasticity of 2625 N/mm2. The second best result was noted for the 4S65 variant, which was significantly different from the 2S65 variant. In the case of the variants with a density of 700 kg/m3, no significant differences were found and their results were significantly lower. Moreover, research on thickness swelling (TS) after 24 h of immersion and water absorption (WA) were also conducted. The obtained results indicate that the manufactured boards are characterized by good physical and mechanical properties.
Keywords (EN)
  • particle board

  • polymer waste

  • blades

  • mechanical properties

License
cc-bycc-by CC-BY - Attribution
Open access date
July 1, 2023
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