Utilization of nanotalc modified adhesives in plywood panels

Yanka Lourenço, Carolina Aparecida dos Santos, Ana Carolina Corrêa Furtini, Lourival Mendes, José Benedito Guimarães Junior
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Abstract

As an alternative for the partial replacement of synthetic adhesives are the modifications that occur still during their synthesis, to improve and adhere new properties. Among the possible materials used in nanoscale, talc is a mineral material of natural origin and a promising raw material due to its low cost, lightness, natural hydrophobicity. Due to the scarcity of studies with the insertion of nanotalc in adhesives, this study aimed to produce plywood panels bonded with phenol-formaldehyde adhesive nanomodified with talc to evaluate its physical-mechanical resistance when compared to conventional synthetic adhesives. To carry out this study, three Pinus oocarpa trees with 28 years of age were used. Different concentrations of talc were used in the formulation with the phenol-formaldehyde adhesive, being the treatments 0; 0,05; 1; 1,5 and 2 % of talc (mass/mass) in relation to the adhesive, with three panels per treatment, totaling 15 panels. The pressing time was 8 minutes with temperature of 160 ºC and pressure of 1 MPa. The physical-chemical characteristics of the lignocellulosic material and of the plywood panels were determined. The quality of the adhesive produced was demonstrated by its resistance to water absorption with the insertion of up to 2 % talc to the adhesive, reducing it considerably. From 1 % talc inserted, the plywood panels had their mechanical characteristics superior to those glued with pure phenol-formaldehyde adhesive. However, as the study is innovative in nature, further research should focus on the application and quality evaluation of other talc nanomodified adhesives on different types of wood panels.
在胶合板中使用纳米多氯化萘改性粘合剂
作为部分替代合成粘合剂的另一种方法是在合成过程中对其进行改性,以改善和粘合新的特性。在纳米级可能使用的材料中,滑石粉是一种天然矿物材料,由于其成本低、质轻、天然疏水性,是一种很有前途的原材料。由于在粘合剂中加入纳米滑石粉的研究较少,本研究旨在用纳米改性滑石粉粘合苯酚-甲醛粘合剂生产胶合板,以评估其与传统合成粘合剂相比的物理机械阻力。为了进行这项研究,使用了三棵树龄为 28 年的松树。在苯酚-甲醛粘合剂的配方中使用了不同浓度的滑石粉,即滑石粉(质量/质量)占粘合剂的比例分别为 0%、0.05%、1%、1.5% 和 2%,每种处理使用三块板,共 15 块板。压制时间为 8 分钟,温度为 160 ºC,压力为 1 兆帕。测定了木质纤维素材料和胶合板的物理化学特性。生产出的粘合剂的质量体现在它的抗吸水性上,在粘合剂中加入 2% 的滑石粉后,吸水性大大降低。滑石粉含量为 1%时,胶合板的机械特性优于使用纯苯酚-甲醛粘合剂粘合的胶合板。不过,由于该研究具有创新性,进一步的研究应侧重于其他滑石粉纳米改性粘合剂在不同类型木板上的应用和质量评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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