Pędzik Marta, Auriga Radosław, Kristak Lubos, Antov Petar, Rogoziński Tomasz
Wood Technology Centre, Łukasiewicz Research Network, Poznań Institute of Technology, 60-654 Poznań, Poland.
Faculty of Forestry and Wood Technology, Poznań University of Life Sciences, 60-627 Poznań, Poland.
Materials (Basel). 2022 Feb 9;15(4):1280. doi: 10.3390/ma15041280.
The depletion of natural resources and increased demand for wood and wood-based materials have directed researchers and the industry towards alternative raw materials for composite manufacturing, such as agricultural waste and wood residues as substitutes of traditional wood. The potential of reusing walnut ( L.) wood residues as an alternative raw material in particleboard manufacturing is investigated in this work. Three-layer particleboard was manufactured in the laboratory with a thickness of 16 mm, target density of 650 kg∙m and three different levels (0%, 25% and 50%) of walnut wood particles, bonded with urea-formaldehyde (UF) resin. The physical properties (thickness swelling after 24 h) and mechanical properties (bending strength, modulus of elasticity and internal bond strength) were evaluated in accordance with the European standards. The effect of UF resin content and nominal applied pressure on the properties of the particleboard was also investigated. Markedly, the laboratory panels, manufactured with 50% walnut wood residues, exhibited flexural properties and internal bond strength, fulfilling the European standard requirements to particleboards used in load-bearing applications. However, none of the boards met the technical standard requirements for thickness swelling (24 h). Conclusively, walnut wood residues as a waste or by-product of the wood-processing industry can be efficiently utilized in the production of particleboard in terms of enhancing its mechanical properties.
自然资源的枯竭以及对木材和木质材料需求的增加,促使研究人员和行业将目光投向用于复合材料制造的替代原材料,例如农业废弃物和木材残余物,以替代传统木材。本研究探讨了将核桃木残余物作为刨花板制造中替代原材料的潜力。在实验室中制造了三层刨花板,厚度为16毫米,目标密度为650千克·立方米,使用脲醛(UF)树脂粘结,并含有三种不同比例(0%、25%和50%)的核桃木颗粒。根据欧洲标准对其物理性能(24小时后的厚度膨胀率)和机械性能(抗弯强度、弹性模量和内结合强度)进行了评估。还研究了UF树脂含量和标称施加压力对刨花板性能的影响。值得注意的是,含有50%核桃木残余物制成的实验室板材表现出了抗弯性能和内结合强度,符合欧洲标准中对承重应用刨花板的要求。然而,所有板材均未达到厚度膨胀率(24小时)的技术标准要求。总之,核桃木残余物作为木材加工业的废料或副产品,在提高刨花板机械性能方面可有效地用于刨花板生产。