Document details

Particleboard Production from Paulownia tomentosa (Thunb.) Steud. Grown in Portugal

Author(s): Esteves, Bruno ; Aires, Pedro ; Sen, Umut ; Gomes, Maria da Glória ; Guiné, Raquel P. F. ; Domingos, Idalina ; Ferreira, José ; Viana, Helder Filipe dos Santos ; Lopes, Luísa P. Cruz

Date: 2023

Persistent ID: http://hdl.handle.net/10400.19/7624

Origin: Repositório Científico do Instituto Politécnico de Viseu

Subject(s): young Paulownia; particleboard; density; thermal conductivity; mechanical properties; physical properties; water absorption; young Paulownia; young Paulownia; particleboard; particleboard; density; density; thermal conductivity; thermal conductivity; mechanical properties; mechanical properties; physical properties; physical properties; water absorption; water absorption


Description

Paulownia wood has raised high attention due to its rapid growth and fire resistance. The number of plantations in Portugal has been growing, and new exploitation methods are needed. This study intends to determine the properties of particleboards made with very young Paulownia trees from Portuguese plantations. Single layer particleboards were produced with 3-year-old Paulownia trees using different processing parameters and different board composition in order to determine the best properties for use in dry environments. The standard particleboard was produced at 180 °C and a 36.3 kg/cm2 pressure for 6 min using 40 g of raw material with 10% urea-formaldehyde resin. Higher particle size lead to lower-density particleboards, while higher resin contents lead to higher density of the boards. Density has a major effect on board properties with higher densities improving mechanical properties such as bending strength, modulus of elasticity (MOE) and internal bond, lower water absorption but higher thickness swelling and thermal conductivity. Particleboards meeting the requirements for dry environment according to NP EN 312 standard, could be produced with young Paulownia wood with acceptable mechanical and thermal conductivity properties with density around 0.65 g/cm3 and a thermal conductivity of 0.115 W/mK.

Document Type Journal article
Language English
Contributor(s) Instituto Politécnico de Viseu
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