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人工林柳树和杨树刨花板的选定物理和机械性能

Selected Physical and Mechanical Properties of Particleboards Manufactured from Plantation Willow and Poplar Wood.

作者信息

Żabowski Bartłomiej, Wronka Anita, Kowaluk Grzegorz

机构信息

Faculty of Wood Technology, Warsaw University of Life Sciences-SGGW, Nowoursynowska St. 159, 02-776 Warsaw, Poland.

Institute of Wood Science and Furniture, Warsaw University of Life Sciences-SGGW, Nowoursynowska St. 159, 02-776 Warsaw, Poland.

出版信息

Materials (Basel). 2024 Aug 16;17(16):4069. doi: 10.3390/ma17164069.

Abstract

This research focuses on producing particleboards from the biomass of plantation willow ( L.) and poplar ( spp.), aiming to explore their feasibility as sustainable materials for various applications. Fast-growing willow and poplar are known for their rapid growth and suitability for energy production. They present an intriguing alternative as raw materials with added value for particleboard manufacturing. This study investigates the selected mechanical and physical properties of the produced particleboards, considering parameters such as density profile, bending strength, modulus of elasticity, internal bond, water absorption, thickness swelling, and screw withdrawal resistance. The research results were also compared between different mass shares of willow and poplar particles in the particleboards. The results show that the panels produced entirely from the tested alternative raw materials had a modulus of rupture of 21.7 N mm compared to 14.6 N mm for the reference panels, with an internal bond of about 2.02 N mm compared to 0.65 N mm for the reference panels. The thickness swelling after 24 h of soaking was about 24.2% compared to 42.2% for reference panels. The findings underscore the promising potential of willow and poplar-based particleboards as eco-friendly alternatives in the construction and furniture industries, contributing to resource efficiency and carbon emission reduction efforts.

摘要

本研究聚焦于利用人工种植柳树(柳属)和杨树(杨属)的生物质生产刨花板,旨在探索其作为可持续材料用于各种应用的可行性。速生柳树和杨树以其快速生长以及适合用于能源生产而闻名。它们作为刨花板制造具有附加值的原材料,是一种引人关注的替代选择。本研究考察了所生产刨花板的选定机械性能和物理性能,考虑了诸如密度分布、抗弯强度、弹性模量、内结合强度、吸水性、厚度膨胀率和抗拧拔力等参数。还对刨花板中柳树和杨树颗粒不同质量占比情况下的研究结果进行了比较。结果表明,完全由测试的替代原材料生产的板材,其断裂模量为21.7 N/mm,而参考板材为14.6 N/mm;内结合强度约为2.02 N/mm,而参考板材为0.65 N/mm。浸泡24小时后的厚度膨胀率约为24.2%,而参考板材为42.2%。这些发现强调了基于柳树和杨树的刨花板作为建筑和家具行业环保替代品的巨大潜力,有助于提高资源利用效率和减少碳排放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be1a/11356380/4158dbcd4860/materials-17-04069-g001.jpg

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