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Ways of Improving the Interfacial Durability of Silicone Adhesives in Building Applications

机译:在建筑应用中提高有机硅胶粘剂界面耐久性的方法

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Beyond their application as sealants, silicone formulations are used as adhesives in insulated glass and structural glazing applications. The adhesion durability of such assemblies is a function of both the adhesion at the glass-interface surfaces and the internal cohesion of the adhesive. Failure in the bulk of the adhesive will occur if external stresses exceed the ultimate strength of the adhesive or when the movement capability of the adhesive is lower than required by the application. The most often observed reasons for failure are, however, substrate-adhesive interface ruptures. If similar silicone adhesives are used in different building projects, the substrates can vary widely, leading to many different interfaces. Interface adhesion can be improved by modifying the substrate surface, modifying the adhesive formulation, or using a primer. In this work, improved adhesion durability on different substrates will be shown with an improved version of a two-part silicone adhesive used for insulated glass and structural glazing applications, which was introduced in Europe in 2010. Results without primer and with the use of either a wet primer or a dry SiOx (Pyrosil~®) flame treatment will be shown. Adhesion durability after water immersion, UV irradiation, and high humidity will be reported for new low E insulated glass coatings, powder coated aluminum, stainless steel, and some other standard building substrates.
机译:除了用作密封剂外,硅酮配方还用作隔热玻璃和结构玻璃的粘合剂。这种组件的粘合耐久性是玻璃界面表面的粘合力和粘合剂的内部粘合力的函数。如果外部应力超过粘合剂的极限强度,或者粘合剂的运动能力低于应用要求,则粘合剂的大部分会失效。但是,最常观察到的故障原因是基材-粘合剂界面破裂。如果在不同的建筑项目中使用类似的有机硅粘合剂,则基材的差别可能很大,从而导致许多不同的界面。可以通过修饰基材表面,更改粘合剂配方或使用底漆来改善界面粘合力。在这项工作中,改进后的两部分有机硅粘合剂用于绝缘玻璃和结构玻璃的应用将展示其在不同基材上的粘合耐久性,该粘合剂于2010年在欧洲推出。将显示湿底漆或干SiOx(Pyrosil®)火焰处理。据报道,新型低辐射隔热玻璃涂料,粉末涂料铝,不锈钢和其他一些标准建筑基材在水浸,紫外线照射和高湿度后的粘合耐久性。

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