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  4. The effect of a phenol-formaldehyde adhesive reinforcement with nanocellulose on the pressing parameters of plywood
 
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The effect of a phenol-formaldehyde adhesive reinforcement with nanocellulose on the pressing parameters of plywood

Type
Journal article
Language
English
Date issued
2022
Author
Kawalerczyk, Jakub 
Dukarska, Dorota 
Mirski, Radosław 
Faculty
Wydział Leśny i Technologii Drewna
Journal
Wood Research
ISSN
1336-4561
DOI
10.37763/wr.1336-4561/67.5.796808
Web address
https://www.woodresearch.sk/cms/the-effect-of-a-phenol-formaldehyde-adhesive-reinforcement-with-nanocellulose-on-the-pressing-parameters-of-plywood/
Volume
67
Number
5
Pages from-to
796-808
Abstract (EN)
Researchon improving the reactivity of phenol-formaldehyde (PF) resin and thepossibility of lowering the pressing parameters of wood-based materials manufactured with its participation are still progressing. Due to a number of favorable properties, nanocellulose(NCC) is gaining more and more popularity as a modifier ofwood adhesives. Therefore, theobjective of the study was to assess the possible reduction of plywood pressing parameters due to the reinforcement of PF resin with NCC. Based on the bonding quality results it was found that there is a possibility to reduce pressing time by 25% and pressing temperature by 7%. Moreover, the outcomes of mechanical properties (modulus of elasticity and bending strength) of manufactured plywood indicate that theoretically it could be possible to decrease the pressing parameters even more. However, the shear strength of the glue joints was considered to be alimiting factor for further reduction. The results of delamination test show that plywood bonded with phenolic resin have no tendency to delaminate. Thus, it can be concluded that NCC can be used as a modifier for PF resin which can contribute to the reduction of pressing time and pressing temperature during the plywood manufacturing process.
Keywords (EN)
  • nanocellulose

  • plywood

  • pressing time

  • pressing temperature

  • phenol-formaldehyde resin

License
otherother Other
Open access date
October 2022
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