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Pre-treatment with sodium silicate, sodium hydroxide, ionic liquids or methacrylate resin to reduce the set-recovery and increase the hardness of surface-densified Scots pine

机译:用硅酸钠,氢氧化钠,离子液体或甲基丙烯酸酯树脂进行预处理,以减少凝固回复并增加表面致密的苏格兰松树的硬度

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摘要

The hardness of the outer regions of solid wood can be improved by surface densification, and this opens up new fields of application for low-density species. So far, surface densification relies on time- and energy-consuming batch processes, and this means that the potential advantages over more expensive hardwood species or non-renewable materials are reduced. Using fossil-based plastics or applying wood densification processes with a high energy consumption has adverse effects on the environment. In a previous study, it was shown that the surface of wood can be densified by a continuous high-speed process, adopting a roller pressing approach. The desired density profiles could be obtained at process speeds of up to 80 m min-1, but an equally simple and fast method to eliminate the moisture-induced set-recovery of the densified wood cells is still required. For this reason, the goal of the present study was to evaluate the effect on the set-recovery and hardness of surface-densified Scots pine after a fast pre-treatment with solutions of sodium silicate, sodium hydroxide, methacrylate resin, and ionic liquids. The Scots pine specimens were pre-treated by applying the chemical treatment and impregnation agents to the wood surface with a paper towel, before the specimens were densified. For each type of treatment, 15 specimens were densified in a hot press. The set-recovery was measured after two wet-dry cycles, and 30 Brinell hardness measurements were carried out on each group of specimens. In general, the effect of the treatments on the set-recovery was rather low. Ionic liquid solutions appear to work as a strong plasticiser and the treatment led to a reduction in set-recovery by 25%. The treatments with sodium silicate, ionic liquids and methacrylate resin led to a greater hardness than in untreated and densified specimens. Further experiments are needed to improve the depth of penetration of the treatment solutions into the wood surface, as this was identified as one of the main causes of the rather weak effects.
机译:可以通过表面致密化来提高实木外部区域的硬度,这为低密度物种开辟了新的应用领域。迄今为止,表面致密化依赖于耗时和耗能的批处理过程,这意味着与更昂贵的硬木树种或不可再生材料相比,潜在的优势有所减少。使用化石基塑料或采用高能耗的木材致密化工艺会对环境造成不利影响。在先前的研究中,表明可以通过采用辊压法的连续高速工艺来致密化木材的表面。可以在高达80 m min-1的处理速度下获得所需的密度分布图,但是仍然需要一种同样简单快捷的方法来消除水分致密化木质细胞的凝固恢复。因此,本研究的目的是评估在用硅酸钠,氢氧化钠,甲基丙烯酸酯树脂和离子液体快速预处理后对表面致密的苏格兰松树的凝固回复率和硬度的影响。在对样品进行致密化之前,先用纸巾对木材表面进行化学处理和浸渍剂,对苏格兰松树样品进行预处理。对于每种处理,在热压机中将15个样品压实。在两次干湿循环后测量凝固回复率,并在每组样品上进行30次布氏硬度测量。通常,治疗对病灶恢复的影响相当低。离子液体溶液似乎可以作为一种强大的增塑剂,并且这种处理使凝固回复率降低了25%。与未经处理和致密化的样品相比,用硅酸钠,离子液体和甲基丙烯酸酯树脂处理的硬度更高。需要进一步的实验来提高处理液渗透到木材表面的深度,因为这被认为是影响效果较弱的主要原因之一。

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