首页> 外文期刊>Journal of Wood Science >Effect of nanoclay on some applied properties of oriented strand board (OSB) made from underutilized low quality paulownia (Paulownia fortunei) wood
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Effect of nanoclay on some applied properties of oriented strand board (OSB) made from underutilized low quality paulownia (Paulownia fortunei) wood

机译:纳米粘土对未充分利用的低质量泡桐(Paulownia fortunei)木材制成的定向刨花板(OSB)某些应用性能的影响

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In this study, the effect of nanoclay on some applied properties of oriented strand board (OSB) made from underutilized low quality paulownia wood was investigated. Organo-modified montmorillonite (MMT) at four levels (0, 1, 3 and 5 %) was added to urea formaldehyde (UF) resin. Some chemical properties of paulownia wood (holocellulose, cellulose, lignin and ash contents, pH value and hot and cold water solubility), mechanical [modulus of rupture (MOR), modulus of elasticity (MOE), internal bond strength, screw and nail withdrawal strengths], physical (water absorption and thickness swelling) properties and formaldehyde emission of the strand boards were evaluated. Mechanical properties of all panels complied with the general-purpose OSB minimum property requirements of European Norm. With increasing 5 % nanoclay to UF resin, mechanical and physical properties of the resulting panels improved and formaldehyde emission decreased. However, none of the panels satisfied the thickness swelling and water absorption requirement. The results of X-ray diffraction and transmission electron microscope analysis confirmed the good dispersion of nanoclay in the resulting OSBs. Using paulownia as a fast-growing underutilized species not only can sustain the forests but also can supply raw material to countries facing shortage of wood.
机译:在这项研究中,研究了纳米粘土对未充分利用的低质量泡桐木制成的定向刨花板(OSB)某些应用性能的影响。将四种含量(0%,1、3%和5%)的有机改性蒙脱石(MMT)添加到脲醛(UF)树脂中。泡桐木的一些化学性质(纤维素,纤维素,木质素和灰分,pH值和冷热水溶解度),机械性[断裂模量(MOR),弹性模量(MOE),内部结合强度,螺钉和钉子拔出强度],物理(吸水率和厚度膨胀)特性以及刨花板的甲醛释放量进行了评估。所有面板的机械性能均符合欧洲规范的通用OSB最低性能要求。随着UF树脂中5%纳米粘土含量的增加,所得板材的机械和物理性能得到改善,甲醛释放量降低。但是,没有一块面板满足厚度膨胀和吸水的要求。 X射线衍射和透射电子显微镜分析的结果证实了纳米粘土在所得OSB中的良好分散。用泡桐作为一种快速增长的未充分利用的物种,不仅可以维持森林的生存,还可以为面临木材短缺的国家提供原材料。

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