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RADIATION INDUCED CROSSLINKING FOR MULTILAYER COIL COATING

机译:多层卷材的辐射诱导交联

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摘要

The present work was aimed to develop multilayer coil coatings, superior to the currently available products by combining conventional and novel application and curing techniques such as radiation curing. Improved mechanical properties and durability can be achieved by high quality three layer thick film coatings. Because of the well-proven qualities of conventional primers and topcoats, all three-layer systems included the radcure coating as a mid layer. Applied as a midcoat, the potential risk of photocatalytic degradation due to unreacted photoinitiator remaining in the radcure coating is eliminated by the pigmented topcoat screening out the harmful sunlight. In addition, the subsequent curing of the topcoat provides a thermal post bake of the midcoat, resulting in further reaction of reactive groups, relaxation of the network and improved properties. Radcure formulations were tested between conventional polyester primers and topcoats on HDG and Galfan substrates. The effect of curing parameters on the degree of conversion and the final coating properties were evaluated. A clear improvement in the overall performance compared to the reference systems was observed. Also the corrosion protection was enhanced especially in the case of scribe down to zinc. The improved corrosion behaviour of the multilayer systems was also evident on the basis of the ElS-results.
机译:通过结合传统和新颖的应用以及诸如辐射固化的固化技术,本工作旨在开发出优于目前可用产品的多层卷材涂料。高质量的三层厚膜涂料可以提高机械性能和耐久性。由于常规底漆和面漆的质量已得到公认,因此所有三层系统都将radcure涂层作为中间层。用作中间涂层时,由于未反应的光引发剂残留在radcure涂层中而导致的光催化降解的潜在风险通过着色的面漆屏蔽了有害的阳光而得以消除。另外,面涂层的随后固化提供了中涂层的热后烘烤,从而导致反应性基团的进一步反应,网络的松弛和改善的性能。在HDG和Galfan基材上的常规聚酯底漆和面漆之间测试了Radcure配方。评估了固化参数对转化率和最终涂层性能的影响。观察到与参考系统相比,总体性能有了明显改善。特别是在划痕为锌的情况下,腐蚀防护也得到增强。根据ElS结果,多层系统的腐蚀行为也得到了改善。

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