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Phase separation influence on the performance of CTBN-toughened epoxy adhesives

机译:相分离对CTBN增韧环氧胶粘剂性能的影响

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Epoxy adhesive systems were formulated and tested for their bonding behavior. Fumed silica and elastomer type and concentration were varied for the purpose of investigating their influences on intermediate and final adhesive performance properties. Of special interest was analyzing the role that flexiblized elastomer, that which does not phase separate during cure, played in these properties. Adhesive systems were tested with a commercial prepreg system using both bonded and cocured geometries. Dynamic mechanical analysis and optical microscopy showed the phase separation of the rubber was significantly influenced by the silica addition. Elastomer-rich dispersed phase growth rates were depressed resulting in a lower percentge of toughening domains. Mode I and II fracture energies were a strong function of dispersed phase particle size, flexibilized elastomer type/content, and residual stress considerations at the resin-resin interface. There were distinct differences between bonded and cocured fracture results with bonded samples generally outperforming cocured specimens due to changes in the surface roughness, resin flow properties, and interfacial stress build-up. Collectively, this work illustrates the improtance of phase separation behavior on the final part morphology and performance for liquid elastomer toughened epoxy adhesives. (Adherends: aluminum and carbon fiber reinforced plastic, both materials commonly used in aircraft components.)
机译:配制了环氧胶粘剂体系,并测试了其粘结性能。为了研究它们对中间和最终粘合性能的影响,改变了气相二氧化硅和弹性体的类型和浓度。特别令人感兴趣的是分析柔性化弹性体(在固化过程中不会发生相分离)在这些特性中的作用。胶粘剂系统使用粘合和共固化的几何形状,通过商用预浸料系统进行测试。动态力学分析和光学显微镜显示,橡胶的相分离受二氧化硅添加的影响很大。富含弹性体的分散相的生长速度降低,导致增韧域的百分比降低。模式I和模式II的断裂能是分散相粒径,弹性化弹性体类型/含量和树脂-树脂界面处残余应力的强烈影响。由于表面粗糙度,树脂流动性和界面应力的变化,粘结和共固化的断裂结果之间存在明显差异,其中粘结样品通常优于共固化的样品。总的来说,这项工作说明了相分离行为对液体弹性体增韧环氧胶粘剂最终零件形态和性能的影响。 (附加物:铝和碳纤维增强塑料,这两种材料通常用于飞机部件。)

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