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Preparation of A Larch Bark-based Composite and Its Properties

机译:落叶松树皮基复合材料的制备及其性能

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摘要

With the depletion of fossil energy,biology material is getting more and more attention. Bark,as a kind of renewable resource,need to be utilized urgently and reasonably. The larch bark was very extensive in northeast and the use of larch bark is limited to make tannin. However,the whole process produced much bark residue,which could not be utilized effectively. In this paper,based on the content of total phenolic hydroxyl groups,the in-situ synthesis reaction of the larch bark with formaldehyde was performed in different ratios. FTIR analysis was adopted to characterize the synthesized products. After air-drying,the synthesized product was pressed into a bark-based composite under pressure of 10~25 MPa. The effect of pressure and molar ratio of phenols and formaldehyde on the properties of the composite were analyzed. These results indicate that,pressure and molar ratio were both vital factors. The composite with higher molar ratio of phenol and formaldehyde had better abilities of anti-moisture,but the molar ratio of 1:2 made the strongest composite. With the increasing of pressure,the hardness of the composite was greater. For the composite made under 20 MPa and the molar ratio of 1:2,its hardness was 23.41 MPa and its max load was 415.83N. Its thickness and diameter swelling rate of moisture absorption in 12 d was 1.87% and 0.68%.
机译:随着化石能源的枯竭,生物材料受到越来越多的关注。树皮作为一种可再生资源,亟待合理利用。东北地区的落叶松树皮非常广泛,并且限制使用落叶松树皮来制作单宁。但是,整个过程中产生大量树皮残留物,无法有效利用。本文基于总酚羟基含量,以不同比例进行了落叶松树皮与甲醛的原位合成反应。通过FTIR分析来表征合成产物。风干后,将合成产物在10〜25MPa的压力下压制成树皮基复合材料。分析了苯酚和甲醛的压力和摩尔比对复合材料性能的影响。这些结果表明,压力和摩尔比都是至关重要的因素。苯酚和甲醛摩尔比较高的复合材料具有较好的防潮性能,但摩尔比为1:2是最强的复合材料。随着压力的增加,复合材料的硬度更高。对于在20 MPa和1:2的摩尔比下制备的复合材料,其硬度为23.41 MPa,最大载荷为415.83N。 12 d的吸水厚度和直径溶胀率分别为1.87%和0.68%。

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