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Optical Properties and Mechanical Modeling of Acetylated Transparent Wood Composite Laminates

机译:乙酰化透明木复合材料层压板的光学性能和力学建模

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摘要

Transparent wood composites (TWCs) are a new class of light-transmitting wood-based materials composed of a delignified wood template that is infiltrated with a refractive- index-matched polymer resin. Recent research has focused primarily on the fabrication and characterization of single-ply TWCs. However, multi-ply composite laminates are of interest due to the mechanical advantages they impart compared to the single ply. In this work, 1- and 2-ply [0°/90°] TWC laminates were fabricated using a delignified wood template (C) and an acetylated delignified wood template (AC). The optical and mechanical properties of resultant C and AC TWC laminates were determined using ultraviolet-visible spectroscopy (UV-Vis) and tensile testing (5× replicates), respectively. In addition, the ability of classical lamination plate theory and simple rule of mixtures to predict multi-ply tensile modulus and strength, respectively, from ply-level mechanical properties were investigated and are reported herein. Experimental results highlight tradeoffs that exist between the mechanical and optical responses of both unmodified and chemically modified TWCs. Template acetylation reduced the stiffness and strength in the 0° fiber direction by 2.4 GPa and 58.9 MPa, respectively, compared to the unmodified samples. At high wavelengths of light (>515 nm), AC samples exhibited higher transmittance than the C samples. Above 687 nm, the 2-ply AC sample exhibited a higher transmittance than the 1-ply C sample, indicating that thickness-dependent optical constraints can be overcome with improved interfacial interactions. Finally, both predictive models were successful in predicting the elastic modulus and tensile strength response for the 2-ply C and AC samples.
机译:透明木复合材料(TWC)是一类新型的透光木基材料,由经过脱色的木质模板组成,并通过与折射率匹配的聚合物树脂渗透。最近的研究主要集中在单层TWC的制造和表征上。然而,多层复合层压板由于与单层层压板相比具有机械优势而受到关注。在这项工作中,使用脱木素木模板(C)和乙酰化脱木素木模板(AC)制造了一层和两层[0°/ 90°] TWC层压板。分别使用紫外可见光谱(UV-Vis)和拉伸测试(5次重复)测定所得C和AC TWC层压板的光学和机械性能。另外,研究并报道了经典层压板理论的能力和混合物的简单规则分别从层级机械性能预测多层拉伸模量和强度的能力。实验结果突显了未修饰和化学修饰的TWC的机械和光学响应之间存在的权衡。与未改性的样品相比,模板乙酰化分别在0°纤维方向上降低了2.4 GPa和58.9 MPa的刚度和强度。在高波长(> 515 nm)的光下,AC样品的透射率高于C样品。在687 nm以上,2层AC样品比1层C样品具有更高的透射率,这表明可以通过改善界面相互作用来克服厚度相关的光学约束。最后,两个预测模型都成功地预测了2层C和AC样品的弹性模量和拉伸强度响应。

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