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A Low-Cost Formaldehyde-Free and High Flame Retardancy Wood Adhesive from Inorganic Adhesives: Properties and Performance

机译:无机胶粘剂的低成本无甲醛和高阻燃木材胶粘剂:性能和性能

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摘要

Wood composites used in indoor living environments often pose formaldehyde emission and fire hazard problems. In this study, magnesium oxychloride cement-based (MOC) inorganic adhesives are presented as an effective and sustainable binder for plywood applications. The phase composition, microstructure, and thermal stability of the adhesives prepared with different ratios of MgO/MgCl2 were investigated. In addition, the dry and wet shear strength and the combustion behavior of the plywood were also examined. The results indicated that the limiting oxygen index (LOI) values of the plywood bonded by the MOC adhesives were higher than those of the plywood bonded by urea-formaldehyde resin. The active MgO/MgCl2 molar ratio of 7 was the optimal ratio for the dry and wet shear strength of the plywood with values of 1.02 and 0.88 MPa, respectively, which meet the interior use panel (Type II plywood) requirements. These improvements were ascribed to the increasing ratio of MgO/MgCl2 that facilitated the formation of an excellent microstructure. Meanwhile, the continuous hydration phase strengthened the interaction between the MOC adhesive and the wood. With these improved properties, MOC adhesive is expected to be widely used for industrial applications in plywood fabrication.
机译:在室内生活环境中使用的木质复合材料通常会造成甲醛释放和火灾隐患。在这项研究中,提出了氯氧化镁水泥基(MOC)无机粘合剂作为胶合板应用的有效和可持续的粘合剂。研究了不同比例的MgO / MgCl2制备的胶粘剂的相组成,微观结构和热稳定性。此外,还检查了胶合板的干,湿剪切强度和燃烧性能。结果表明,MOC胶粘剂粘合的胶合板的极限氧指数(LOI)值高于脲醛树脂胶合板的极限氧指数(LOI)值。活性MgO / MgCl2摩尔比为7,这是胶合板干,湿剪切强度的最佳比例,分别为1.02和0.88 MPa,可以满足室内面板(II型胶合板)的要求。这些改善归因于MgO / MgCl2比例的增加,这有助于形成优异的微观结构。同时,连续水合阶段增强了MOC粘合剂与木材之间的相互作用。凭借这些改善的性能,MOC粘合剂有望在胶合板制造中广泛用于工业应用。

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