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源自生长于葡萄牙的(Thunb.)Steud. 的刨花板生产

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

作者信息

Esteves Bruno, Aires Pedro, Sen Umut, Gomes Maria da Glória, Guiné Raquel P F, Domingos Idalina, Ferreira José, Viana Hélder, Cruz-Lopes Luísa P

机构信息

Department of Wood Engineering, Polytechnic Institute of Viseu, Av. Cor. José Maria Vale de Andrade, 3504-510 Viseu, Portugal.

Centre for Natural Resources, Environment and Society-CERNAS-IPV, Av. Cor. José Maria Vale de Andrade, 3504-510 Viseu, Portugal.

出版信息

Polymers (Basel). 2023 Feb 24;15(5):1158. doi: 10.3390/polym15051158.

Abstract

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/cm 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/cm and a thermal conductivity of 0.115 W/mK.

摘要

泡桐木材因其生长迅速和耐火性而备受关注。葡萄牙的人工林数量一直在增加,因此需要新的采伐方法。本研究旨在确定用葡萄牙人工林中非常年轻的泡桐树制成的刨花板的性能。使用3年生的泡桐树,通过不同的加工参数和不同的板材组成生产单层刨花板,以确定在干燥环境中使用的最佳性能。标准刨花板是在180°C和36.3 kg/cm的压力下,使用40 g原料和10%的脲醛树脂压制6分钟制成的。较大的颗粒尺寸会导致刨花板密度较低,而较高的树脂含量会导致板材密度较高。密度对板材性能有重大影响,较高的密度可提高机械性能,如抗弯强度、弹性模量(MOE)和内结合强度,降低吸水率,但会增加厚度膨胀率和热导率。根据NP EN 312标准,用年轻的泡桐木材可以生产出满足干燥环境要求的刨花板,其机械性能和热导率性能可接受,密度约为0.65 g/cm,热导率为0.115 W/mK。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89bc/10007643/977ad330fc69/polymers-15-01158-g001.jpg

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