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Effects of different molecular chain lengths and side groups on structure and property of UV-curable waterborne cathodic electrophoretic deposition coatings

机译:不同分子链长度和侧基对UV固化水阴极电泳沉积涂层结构和性能的影响

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摘要

A series of UV-curable waterborne cathodic electrophoretic deposition (CED) coatings with various structures were successfully developed by introducing modified acrylic monomer with different molecular chain lengths and side groups. The length of linear chain of the modified monomer had little effect on phase separation of acrylic polymer and easily formed homogeneous structure. Owing to the longer molecular chains, the pencil hardness decreased from 2H to H and the glass transition temperature reduced to 77.7 degrees C. The hard side groups of the modified monomer in CED coatings exhibited opposite characteristics resulting from the steric hindrance of the rigid groups and the crosslinking network, which were more likely to exhibit partial phase separation. Therefore, the stronger rigidity of the molecular structure improved the particle size to 122.42 nm, the smoothness of the CED cured film and surface contact angle decreased. And the morphology of the films became rough and surface contact angle decreased. Besides, the adhesive force and flexibility of the films could be excellent. The surface rust of the modified CED film is not remarkable under salt spray test. The photopolymerization rate (R-p) and the double bond conversion were evaluated. It was found that the R-p and the conversion obviously decreased with increasing rigid groups in acrylate molecular chains. However, the maximum decomposition temperature of it was higher than the other samples. The residue char yield (Y-c,) was 5.24 wt%. The stronger rigidity of the molecular structure had better thermal stability and mechanical properties.
机译:通过引入具有不同分子链长度和侧基的改性丙烯酸单体,成功开发了一系列具有各种结构的UV固化水性阴极电泳沉积(CED)涂层。改性单体的线性链的长度对丙烯酸类聚合物的相分离效果不大,并且容易形成均匀的结构。由于较长的分子链,铅笔硬度从2小时降低,并且玻璃化转变温度降低至77.7℃。改性单体中的CED涂层的硬侧基团表现出由刚性基团的空间阻断产生的相反特性交联网络更可能表现出部分分离。因此,分子结构的较强刚性改善了粒径至122.42nm,CED固化膜的光滑度和表面接触角下降。薄膜的形态变得粗糙,表面接触角下降。此外,薄膜的粘合力和柔韧性可以是优异的。改性CED薄膜的表面锈病在盐雾试验下不显着。评价光聚合速率(R-P)和双键转化。发现R-P和转化率明显降低了丙烯酸酯分子链中的刚性基团。然而,它的最大分解温度高于其他样品。残余物炭产率(Y-C,)为5.24wt%。分子结构的较强刚性具有更好的热稳定性和机械性能。

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