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Surface characterization of eucalyptus and ash wood veneers by XPS, TOF-SIMS, optic profilometry and contact angle measurements

机译:通过XPS,TOF-SIMS,光学轮廓和接触角测量对桉木和白蜡木贴面进行表面表征

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Composition and properties of the wood surface are very important in board manufacture as they determine wood-adhesive bonding and the quality of the final product. In this work two spectroscopic techniques, X-ray photoelectron spectrometry (XPS) and time of flight secondary ion mass spectrometry (TOF -SIMS), have been employed to study the surface composition of eucalyptus (Eucalyptus globulus) and ash (Fraxinus excelsior) sliced cut veneers. Both wood species are widely used for decorative veneers in the finishing of wood panels (particle boards, medium density fiber-boards, etc.). Further characterization of the wood surface was carried out by optic profllometry and wettability analysis, using the sessile drop method to measure contact angles. Wood is a very heterogeneous material and its composition can vary significantly depending on the sampling area; then, the influence of the radial position of the veneer in the trunk was also analyzed. From the low resolution XPS spectra the oxygen to carbon (O/C) ratio was calculated and, resolving the Cls signal, the percentages of the different carbon peaks corresponding to different functional groups (C1, C2, C3 and C4 carbons) were also calculated. The lower O/C ratio and the higher C1/C2 ratio for eucalyptus than for ash was attributed to the higher concentration of extractives on the eucalyptus wood surface that was confirmed by the TOF-SIMS spectra, which additionally revealed a patchy distribution of the extractives. The higher hydrophobicity of the eucalyptus wood surfaces was also supported by the results on the wetting properties of the veneers. Eucalyptus veneers exhibited a significantly higher constant wetting rate angle (cwra) and, consequently, a lower wettability than ash veneers, which can also be related with the higher values of the rugosity parameters for the latter. There were no significant influences of the radial position of the veneer on the surface properties.
机译:木材表面的组成和性能在木板制造中非常重要,因为它们决定了木材的粘合力和最终产品的质量。在这项工作中,X射线光电子能谱法(XPS)和飞行时间二次离子质谱法(TOF -SIMS)已被用于研究切成薄片的桉树(Eucalyptus globulus)和灰烬(Fraxinus excelsior)的表面组成。切单板。两种木材都广泛用于木板饰面(刨花板,中密度纤维板等)的装饰贴面。木材表面的进一步表征是通过光学滴度法和可湿性分析,使用无滴法测量接触角来进行的。木材是一种非常不均匀的材料,其组成可能会因采样区域而异。然后,分析了单板在树干中的径向位置的影响。从低分辨率XPS光谱中计算出氧碳比(O / C),并解析Cls信号,还计算出了与不同官能团(C1,C2,C3和C4碳原子)相对应的不同碳峰的百分比。桉树的O / C比值和灰分比C / C2值更高,这归因于TOF-SIMS光谱证实,桉树木材表面的提取物浓度较高,这也表明提取物的分布不均。单板的润湿性能结果也证明了桉木表面的疏水性更高。桉木贴面表现出显着更高的恒定润湿速率角(cwra),因此,其湿润性低于灰贴面,这也与后者的皱纹度参数值更高有关。饰面板的径向位置对表面性能没有重大影响。

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