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首页> 外文期刊>Maderas: ciencia y tecnologia >Effect of nanoclay-treated UF resin on the physical and mechanical properties of plywood manufactured with wood from tropical fast growth plantations
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Effect of nanoclay-treated UF resin on the physical and mechanical properties of plywood manufactured with wood from tropical fast growth plantations

机译:纳米粘土处理的UF树脂对热带速生人工林制成的胶合板的物理和机械性能的影响

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Physical and mechanical properties were evaluated on cross-laminated panels (plywood) fabricated with three plantation species (Cordia alliodora, Gmelina arborea and Vochysia ferruginea) from tropical climates in Costa Rica. The panels were glued with urea-formaldehyde resin modified with nanoclay at four concentrations (0,75; 1,00; 1,50 and 2,00 %) and unmodified resin. It was determined that addition of nanoclay to urea-formaldehyde adhesive positively decreased moisture absorption and swelling of the plywood panel with statistical significance. However, nano-modification did not have a significant effect on the density and specific weight of plywood. Nano-modification of urea-formaldehyde resin with nanoclay at 0,75 % improved the Module of rupture and Modulus of elasticity in flexure parallel to surface in the three species, also increasing mechanical resistance to strains in parallel tension, shear and compression. By means of electronic microscopy, it was evidenced that the nano-modified adhesive became diffused at the inside of the cellular structure of wood in a better way, allowing for the generation of a transition zone that increased the mechanical properties at the macro level. According to the properties evaluated, it was determined that 0,75 % is the optimal percentage to use of nanoclay on urea-formaldehyde resin.
机译:在哥斯达黎加的热带气候下,使用三种种植树种(Cordia alliodora,Gmelina arborea和Vochysia ferruginea)制成的交叉层压板(胶合板)评估了物理和机械性能。用四种浓度(0.75%; 1.0%; 1.50%和2.00%)的纳米粘土改性的脲醛树脂和未改性的树脂粘合面板。已确定向脲甲醛粘合剂中添加纳米粘土可积极降低胶合板面板的吸湿性和溶胀性,具有统计学意义。但是,纳米改性对胶合板的密度和比重没有显着影响。用0.75%的纳米粘土对脲醛树脂进行纳米改性,改善了这三种物种中平行于表面的挠曲性的断裂模量和弹性模量,还提高了在平行拉伸,剪切和压缩时对应变的机械抵抗力。通过电子显微镜,已证明纳米改性粘合剂以更好的方式扩散到木材的细胞结构内部,从而允许产生过渡区域,该过渡区域在宏观水平上提高了机械性能。根据评价的性能,确定0.75%是在脲醛树脂上使用纳米粘土的最佳百分比。

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