硬木单板致密化对胶合板密度、表面硬度和螺钉抽出能力的影响

Forests Pub Date : 2024-07-22 DOI:10.3390/f15071275
H. Kallakas, Tolgay Akkurt, A. Scharf, Fred Mühls, A. Rohumaa, J. Kers
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引用次数: 0

摘要

日益增强的环保意识和木材的碳储存能力,使其作为建筑材料的意义更加重大。由于森林面积和优质木材数量有限,对优质木材品种的需求要求必须探索未得到充分利用的替代木材来源。因此,木皮行业正在考虑用灰赤杨(Alnus Incania)、黑赤杨(Alnus glutinosa)和山杨(Populus tremula)等价值较低的硬木树种来替代优质桦木(Betula pendula)。这些树种起初由于密度和机械性能较低而不太吸引人,但通过增密,它们的密度、强度和硬度都得到了提高,显示出了发展前景。本研究旨在通过对低密度木种进行增密处理,并将其用于胶合板面材层或所有层中,从而提高胶合板的螺钉抽出能力和表面硬度。研究了木材密度、表面硬度和由杨木和黑桤木等低价值树种制成的胶合板的螺钉抽出能力之间的关系。在一条试验规模的单板和胶合板生产线上进行的实验工作表明,经过增密处理的面单板胶合板的表面硬度(杨木和黑赤杨分别为 65% 和 93%)和螺钉抽出能力(杨木和黑赤杨分别为 16% 和 35%)均有所提高。这项研究凸显了低价值木材品种在满足建筑要求方面的潜力,扩大了它们的实际应用范围。
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The Effect of Hardwood Veneer Densification on Plywood Density, Surface Hardness, and Screw Withdrawal Capacity
Increasing environmental awareness and the carbon-storing capability of wood have amplified its relevance as a building material. The demand for high-quality wood species necessitates exploring alternative, underutilized wood sources due to limited forest areas and premium wood volume. Consequently, the veneer-based industry is considering lower-value hardwood species like grey alder (Alnus Incania), black alder (Alnus glutinosa), and aspen (Populus tremula) as substitutes for high-quality birch (Betula pendula). Initially less appealing due to their lower density and mechanical properties, these species show promise through densification, which enhances their density, strength, and hardness. This study aims to enhance plywood screw withdrawal capacity and surface hardness by densifying low-density wood species and using them in plywood face-veneer layers, or in all layers. The relationship between the wood density, surface hardness, and screw withdrawal capacity of plywood made of low-value species like aspen and black alder is examined. Experimental work with a pilot-scale veneer and plywood production line demonstrates improved surface hardness (65% and 93% for aspen and black alder, respectively) and screw withdrawal capacity (16% and 35% for aspen and black alder, respectively) in densified face veneer plywood. This research highlights the potential of densified low-value wood species to meet construction requirements, expanding their practical applications.
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