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受树根启发,用超支化聚合物对木材表面进行接枝处理,以增强与浸渍装饰纸的界面附着力。

Root-inspired grafting of wood surfaces with hyperbranched polymers for enhanced interfacial adhesion with impregnated decorative paper.

作者信息

Li Hui, Liu Ru, Li Xinyu, Xu Kun, Cao Jinzhen

机构信息

School of Materials Science and Technology, Beijing Key Laboratory of Wooden Material Science and Application, Beijing Forestry University Haidian Beijing 100083 China

Research Institute of Wood Industry, Chinese Academy of Forestry Haidian Beijing 100091 China

出版信息

RSC Adv. 2024 Dec 9;14(52):38706-38720. doi: 10.1039/d4ra07688e. eCollection 2024 Dec 3.

Abstract

A root-like waterborne hyperbranched polymer, synthesized from diethylenetriamine (DETA) and methyl acrylate (MA) monomers, was inspired by the effect of solidifying soil with tree roots. This polymer was then blended with aqueous isocyanate SK615, known as MD-HBP-NH, to serve as a surface modifier for blockboards. The blockboards were treated with a modifier to enhance the interfacial adhesion with melamine-formaldehyde (MF) resin-impregnated decorative paper, thereby preventing surface cracks. The polycondensation reaction temperatures of the modifiers were compared. These results indicated that a hyperbranched root-structured polymer emulsion was formed through Michael addition reactions. Following this modification, the blockboards demonstrated enhanced planeness and dimensional stability. Furthermore, the isocyanate groups reacted with the exposed hydroxyl groups, and the amino groups reacted with the aldehyde groups in the MF resin, thereby enhancing the interfacial bonding strength between the wood and the impregnated decorative paper. At a polycondensation temperature of 155 °C, optimal overall performance was attained, with the ability to penetrate the wood surface to a depth of 1.28 mm, and exhibited superior surface crack resistance. Moreover, this waterborne hyperbranched polymer modifier is eco-friendly, green, and non-toxic, with lower levels of volatile organic compounds. This presents a promising avenue for the development of eco-friendly modifiers to prevent surface cracking in wood-based panels with impregnated decorative paper.

摘要

一种由二乙烯三胺(DETA)和丙烯酸甲酯(MA)单体合成的根状水性超支化聚合物,其灵感来源于树根对土壤的固化作用。然后将这种聚合物与水性异氰酸酯SK615(称为MD - HBP - NH)混合,用作细木工板的表面改性剂。用该改性剂处理细木工板,以增强其与三聚氰胺 - 甲醛(MF)树脂浸渍装饰纸的界面附着力,从而防止表面开裂。比较了改性剂的缩聚反应温度。这些结果表明,通过迈克尔加成反应形成了超支化根状结构聚合物乳液。经过这种改性后,细木工板的平整度和尺寸稳定性得到增强。此外,异氰酸酯基团与暴露的羟基反应,氨基与MF树脂中的醛基反应,从而提高了木材与浸渍装饰纸之间的界面结合强度。在缩聚温度为155℃时,获得了最佳的综合性能,能够渗透到木材表面1.28毫米的深度,并表现出优异的抗表面开裂性能。此外,这种水性超支化聚合物改性剂环保、绿色、无毒,挥发性有机化合物含量较低。这为开发用于防止浸渍装饰纸人造板表面开裂的环保型改性剂提供了一条有前景的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ded4/11626439/328c43a4a90d/d4ra07688e-f1.jpg

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