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首页> 外文期刊>Journal of Applied Polymer Science >Copolymerization in UF/pMDI adhesives networks
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Copolymerization in UF/pMDI adhesives networks

机译:UF / pMDI粘合剂网络中的共聚

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Kinetic evidence in thermomechanical analysis experiments and carbon-13 nuclear magnetic resonance spectroscopy (C-13 NMR) evidence indicates that the strength of a joint bonded with OF (urea-formaldehyde) /polymeric 4,4'-diphenylmethane diisocyanate (pMDI) glue mixes is improved by coreaction of the methylol groups of OF resins with pMDI to form a certain number of methylene cross-links. The formation of these methylene cross-links is predominant, rather than formation of urethane bridges which still appear to form but which are in great minority. This reaction occurs in presence of water and under the predominantly acid hardening conditions, which is characteristic of aminoplastic resins (thus, in presence of a hardener). Coreaction occurs to a much lesser extent under alkaline conditions (hence, without UF resins hardeners). The predominant reaction is then different in UF/pMDI adhesive systems than that observed in phenol-formaldehyde (PF)/ pMDI adhesive systems. The same reaction observed for UF/pMDI system at higher temperatures has also been observed in PF/pMDI systems, but only at lower temperatures. The water introduced in the UF/pMDI mix by addition of the OF resin solution has been shown not to react with pMDI to an extent such as to contribute much, if at all, to the increase in strength of the hardened adhesive. (C) 2002 Wiley Periodicals, Inc. [References: 33]
机译:热力学分析实验中的动力学证据和碳13核磁共振波谱(C-13 NMR)证据表明,与OF(脲醛)/ 4,4'-二苯基甲烷二异氰酸酯聚合物(pMDI)胶水混合的结合点的强度通过OF树脂的羟甲基与pMDI的共反应形成一定数量的亚甲基交联,可以改善二甲氧基。这些亚甲基交联的形成是主要的,而不是氨基甲酸酯桥的形成,该氨基甲酸酯桥似乎仍然形成,但数量很少。该反应在水的存在下以及主要在酸硬化条件下发生,这是氨基塑料树脂的特征(因此在硬化剂存在下)。在碱性条件下,共反应发生的程度要小得多(因此,没有UF树脂硬化剂)。因此,UF / pMDI粘合剂系统中的主要反应与酚醛(PF)/ pMDI粘合剂系统中观察到的反应不同。在PF / pMDI系统中也观察到了在较高温度下对UF / pMDI系统观察到的相同反应,但仅在较低温度下才观察到。已显示通过添加OF树脂溶液而引入UF / pMDI混合物中的水不会与pMDI反应到一定程度,以至于对硬化胶粘剂强度的提高做出了很大的贡献。 (C)2002 Wiley Periodicals,Inc. [参考:33]

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