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Flexible transparent wood prepared from poplar veneer and polyvinyl alcohol

机译:由杨木贴面和聚乙烯醇制成的柔性透明木材

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摘要

The fabrication of transparent wood (TPW) has generated lot of interest in the recent past due to its favorable physical, mechanical and fascinating optical properties. The present work, describes a 'green' method to fabricate a biodegradable and highly flexible transparent wood-polymer composite from poplar wood veneers and polyvinyl alcohol (PVA). In this method, the wood veneers are chemically treated under mild conditions to remove the light-absorbing components in wood without damaging the hierarchical wood structure. Then, the mesoporous template structure of bleached wood is infiltrated with an aqueous PVA dispersion and dried to obtain flexible TPW. The effect of plasticizing PVA with propylene glycol (PG) on the mechanical and optical properties of TPW has been studied. The flexibility of TPW increased with increase in PG content in PVA. The TPW prepared from the aqueous dispersion of PG:PVA (1:1) exhibited optical transmittance as high as 80% and haze of 90% with excellent flexibility, optical and mechanical anisotropy. The potential application of such optically anisotropic and flexible wood-polymer composite as light shaping diffuser is successfully demonstrated.
机译:透明木材(TPW)的制造由于其良好的物理,机械和引人入胜的光学性能而在最近引起了很多兴趣。本工作描述了一种“绿色”方法,该方法由杨木贴面和聚乙烯醇(PVA)制成可生物降解的高柔性透明木聚合物复合材料。在这种方法中,在温和的条件下对木材贴面进行化学处理,以去除木材中的光吸收成分,而不会损坏分层的木材结构。然后,将漂白木材的中孔模板结构用PVA水性分散液浸润并干燥,以获得柔性TPW。研究了用丙二醇(PG)增塑PVA对TPW的机械和光学性能的影响。 TPW的灵活性随着PVA中PG含量的增加而增加。由PG:PVA(1:1)的水分散体制备的TPW表现出高达80%的透光率和90%的雾度,具有优异的柔韧性,光学和机械各向异性。成功地证明了这种光学各向异性和柔性的木材-聚合物复合材料作为光成形扩散器的潜在应用。

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