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Advanced Wood Products with Nanoengineered Surfaces

机译:具有纳米工程表面的高级木制品

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摘要

Wood and wood products are widely used as construction, furnishing and decorative materials for ecological reasons and also by reason of the appealing appearance of wooden surfaces. However, wood and wood products also have some disadvantages. For example, dimensional changes in response to altering atmospheric conditions, susceptibility to biological attack and changes in appearance due to weathering restrict the end-use of wood. Recently, it has been observed that one of the most promising methods to improve and provide new properties for wood materials is to modify wood surfaces with multifunctional alkoxysilanes by sol-gel technology. The advantage of the sol-gel process is that it allows deposition of inorganic-organic polymeric networks on various substrates as a result of controlled hydrolysis and polycondensation of alkoxysilanes. The properties of sol-gel coatings, such as abrasion resistance, barrier properties, moisture behavior as well as adhesion to different substrates, are controlled by the surface properties of the coatings and the sol-gel process variables. In this work, the moisture behavior of pine (Pinus sylvestris) sapwood and heat-treated spruce (Picea abies) was studied. The results indicated that water uptake especially of pine wood was diminished by the hydrophobic sol-gel-coating.
机译:出于生态方面的原因以及木质表面的美观性,木材和木制品被广泛用作建筑,家具和装饰材料。但是,木材和木制品也有一些缺点。例如,响应于变化的大气条件的尺寸变化,对生物侵蚀的敏感性以及由于风化引起的外观变化限制了木材的最终用途。最近,已经观察到,改善和提供木质材料新特性的最有前途的方法之一是通过溶胶-凝胶技术用多功能烷氧基硅烷对木质表面进行改性。溶胶-凝胶法的优点在于,由于烷氧基硅烷的受控水解和缩聚,它允许无机-有机聚合物网络沉积在各种基材上。溶胶-凝胶涂料的性能,如耐磨性,阻隔性能,湿气行为以及对不同基材的附着力,均由涂层的表面性能和溶胶-凝胶工艺变量控制。在这项工作中,研究了松木(Pinus sylvestris)边材和热处理云杉(Picea abies)的水分行为。结果表明,通过疏水性溶胶-凝胶涂层减少了尤其是松木的吸水率。

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