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ThicknessDependence of Optical Transmittance of Transparent Wood: ChemicalModification Effects

机译:厚度透明木材的透光率的依赖性:化学修改效果

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摘要

Transparent wood (TW) is an emerging optical material combining high optical transmittance and haze for structural applications. Unlike nonscattering absorbing media, the thickness dependence of light transmittance for TW is complicated because optical losses are also related to increased photon path length from multiple scattering. In the present study, starting from photon diffusion equation, it is found that the angle-integrated total light transmittance of TW has an exponentially decaying dependence on sample thickness. The expression reveals an attenuation coefficient which depends not only on the absorption coefficient but also on the diffusion coefficient. The total transmittance and thickness were measured for a range of TW samples, from both acetylated and nonacetylated balsa wood templates, and were fitted according to the derived relationship. The fitting gives a lower attenuation coefficient for the acetylated TW compared to the nonacetylated one. The lower attenuation coefficient for the acetylated TW is attributed to its lower scattering coefficient or correspondingly lower haze. The attenuation constant resulted fromour model hence can serve as a singular material parameter that facilitatescross-comparison of different sample types, at even different thicknesses,when total optical transmittance is concerned. The model was verifiedwith two other TWs (ash and birch) and is in general applicable toother scattering media.
机译:透明木材(TW)是一种新兴的光学材料,结合了高透光率和雾度,可用于结构应用。与非散射吸收介质不同,TW的光透射率的厚度依赖性很复杂,因为光损耗还与多次散射引起的光子路径长度增加有关。在本研究中,从光子扩散方程出发,发现TW的角度积分总透光率与样品厚度呈指数衰减关系。该表达式揭示了衰减系数,该衰减系数不仅取决于吸收系数,而且取决于扩散系数。从乙酰化和非乙酰化轻木模板中测量一系列TW样品的总透射率和厚度,并根据推导的关系进行拟合。与未乙酰化的TW相比,拟合给出了较低的乙酰化TW衰减系数。乙酰化的TW的较低的衰减系数归因于其较低的散射系数或相应较低的雾度。衰减常数来自因此,我们的模型可以用作单个材料参数,从而有助于甚至不同厚度的不同样品类型的交叉比较,当涉及总透光率时。模型已验证与另外两个TW(灰和桦木)一起使用,通常适用于其他散射介质。

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