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Structure and Property of PGMA/Wood Composite

机译:PGMA /木材复合材料的结构和性能

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In order to prepare a wood-based composite material which, as a type of multifunctional and natural bio-based material, possesses satisfactory mechanical properties, excellent durability (i.e., decay resistance and dimensional stability), and Aenvironmental characteristic, the study presents a new method which is based on the cellular structure of wood by initiating polymerizable monomers for in situ polymerization. Glycidyl methacrylate (GMA) as a multifunctional and polymerizable monomer was chosen, and impregnated into the porous structure of wood. After a thermal-catalyst process, the wood-based composite, PGMA/Wood, was prepared. The structure of this material was analyzed by SEM, FTIR and XRD; and its performance was also determined. The analyzing results show that GMA not only polymerized in the cellular structure in a solid form and amorphous form, which fully and uniformly filled in wood cell lumen, but also sufficiently grafted onto wood cell walls in a chemical level, resulting in tight contact between wood cell walls and resultant polymers (PGMA) without any obvious cracks. The test results of mechanical properties show that the modulus of rupture (MOR), modulus of elasticity (MOE), compression strength, and hardness of PGMA/Wood increased by 82%, 122%, 139%, and 348% over those of untreated wood, respectively. The test results of durability show that the dimensional stability and decay resistance of PGMA/Wood improved 44% and 91% than those of untreated wood, respectively. Such composite could be widely applied in the fields of construction, furniture and traffic.
机译:为了制备基于木制的复合材料,其作为一种类型的多功能和天然生物基材料,具有令人满意的机械性能,优异的耐久性(即,腐蚀性和尺寸稳定性)和环环境特征,这项研究显示了一个新的基于木材蜂窝结构的方法通过启动用于原位聚合的可聚合单体。选择甲基丙烯酸酯(GMA)作为多官能和可聚合单体,并浸渍到木材的多孔结构中。在热催化剂过程之后,制备木材基复合材料PGMA /木材。通过SEM,FTIR和XRD分析该材料的结构;它的表现也得到了确定。分析结果表明,GMA不仅以固体形式和无定形形式在细胞结构中聚合,其完全和均匀地填充在木细胞内腔中,而且在化学水平上充分接枝到木材电池壁上,导致木材之间的紧密接触没有任何明显裂缝的细胞壁和所得聚合物(PGMA)。机械性能的测试结果表明,PGMA /木材的破裂模量(MOO),弹性模量(MOE),压缩强度和硬度增加了82%,122%,139%,而不是未处理的那些木头分别。耐久性的测试结果表明,PGMA /木材的尺寸稳定性和衰减性分别提高了44%和91%而不是未处理的木材。这种复合材料可广泛应用于建筑,家具和交通领域。

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