首页> 外文期刊>Journal of Applied Polymer Science >Melamine-Bridged Alkyl Resorcinol Modified Urea-Formaldehyde Resin for Bonding Hardwood Plywood
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Melamine-Bridged Alkyl Resorcinol Modified Urea-Formaldehyde Resin for Bonding Hardwood Plywood

机译:三聚氰胺桥烷基间苯二酚改性的脲醛树脂,用于粘结硬木胶合板

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A powdery product was obtained by the reaction of methylolated melamine with alkyl resorcinols to form melamine-bridged alkyl resorcinols (MARs). The effects of the addition of this powder on the bonding strength and formaldehyde emission of urea formaldehyde (UF) resins were investigated. Three types of UF resins with a formaldehyde/urea molar ratio of 1.3 synthesized by condensation at pH 1.0 (UF-1.0), pH 4.5 (UF-4.5), and pH 5.0 (UF-5.0) were fabricated. The addition of MAR to UF-4.5 and UF-5.0 for bonding hardwood plywood enhanced the bonding strength and reduced formaldehyde emission. For UF-1.0, the addition of MAR adversely affected the bonding strength. However, the UF-1.0 resin yielded the lowest formaldehyde emission of all of the UF resins in the study. The effects of the MAR addition were related to the molecular structures of the UF resins. UF-1.0 contained a large amount of free urea, a considerable number of urons, and a highly methylene-linked, ring-structured higher molecular weight fraction and had a smaller number of methylol groups. Therefore, the addition of MAR was considered to cause a shortage of the methylol groups, which in turn, led to incomplete resin curing. In contrast to UF-1.0, UF-5.0 contained a smaller amount of free urea and a linearly structured higher molecular weight fraction and had a larger number of methylol groups. In this case, MAR was considered to effectively react with the methylol groups to develop a three-dimensional crosslinked polymer network to enhance the bonding strength and suppress the generation of free formaldehyde to reduce formaldehyde emission.
机译:通过羟甲基化的三聚氰胺与烷基间苯二酚反应形成三聚氰胺桥连的烷基间苯二酚(MAR),获得粉末状产物。研究了这种粉末的添加对脲甲醛(UF)树脂的粘结强度和甲醛释放量的影响。制备通过在pH 1.0(UF-1.0),pH 4.5(UF-4.5)和pH 5.0(UF-5.0)下缩合合成的三种甲醛​​/脲摩尔比为1.3的UF树脂。在UF-4.5和UF-5.0中添加MAR以粘合硬木胶合板可提高粘合强度并减少甲醛释放。对于UF-1.0,MAR的添加会对粘合强度产生不利影响。但是,在该研究中,UF-1.0树脂的甲醛释放量最低。 MAR添加的影响与UF树脂的分子结构有关。 UF-1.0包含大量的游离尿素,大量的uron和高度亚甲基连接的,环状结构的较高分子量级分,并且具有较少的羟甲基。因此,认为添加MAR会引起羟甲基的缺乏,进而导致树脂固化不完全。与UF-1.0相比,UF-5.0包含较少量的游离尿素和线性结构的较高分子量馏分,并具有大量的羟甲基。在这种情况下,MAR被认为可以有效地与羟甲基反应形成三维交联的聚合物网络,从而增强键合强度并抑制游离甲醛的产生,从而减少甲醛的排放。

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