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Study of the production process of 3-layer sugarcane-bamboo-based particleboards

机译:三层甘蔗-竹基刨花板生产工艺研究

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This study evaluated the technical viability and performance of two different production processes of 3-layer sugarcane-bamboo-based particleboard (3LP) (3LP-PL: pressing in each layer; and 3LP-NPL: non-pressing in each layer) throughout their thermal, physical, mechanical and microstructural properties. The thermal conductivity was determined according to the methodology established by ASTME1530: 2011. Physical and mechanical properties were evaluated following the ABNT NBR 14810:2013 Brazilian Standards recommendations. Microstructural properties of the 3LP studied was assessed by using the Micro-CT technique. Thermal conductivity values of both 3LP were lower than the value required by Brazilian Standards for wood-based particleboards. Physical results indicated that the non-pressing in each layer during the 3LP production resulted in less thickness swelling (TS) and water absorption (WA). Modulus of rupture (MOR) and modulus of elasticity (MOE) of the 3LP-NPL showed an increase of 38 and 29% compared to the 3LP-PL respectively. Additionally, an increase of 31% was found for the internal bond (IB) value of the 3LP-NPL compared to the 3LP-PL. Considering the results achieved for the 3-layer sugarcane-bamboo-based particleboard the non-pressing in each layer during production presented lower TS and WA values and higher MOR, MOE and IB values. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究评估了三层甘蔗-竹基刨花板(3LP)的两种不同生产工艺的技术可行性和性能(3LP-PL:每层压制; 3LP-NPL:每层无压制)热,物理,机械和微观结构特性。导热系数是根据ASTME1530:2011建立的方法确定的。物理和机械性能是根据ABNT NBR 14810:2013巴西标准建议进行评估的。通过使用Micro-CT技术评估了所研究的3LP的微观结构特性。两种3LP的热导率值均低于巴西标准对木质碎料板的要求。物理结果表明,在3LP生产过程中,每层的非压制导致厚度膨胀(TS)和吸水率(WA)减小。与3LP-PL相比,3LP-NPL的断裂模量(MOR)和弹性模量(MOE)分别增加了38%和29%。此外,与3LP-PL相比,发现3LP-NPL的内部键(IB)值增加了31%。考虑到三层甘蔗-竹基刨花板的结果,在生产过程中每一层的非压制表现出较低的TS和WA值以及较高的MOR,MOE和IB值。 (C)2018 Elsevier Ltd.保留所有权利。

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