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Surface Treatments and Adhesives for Bonded Repairs toHigh Temperature Carbon-BismaleimideComposite Structure

机译:表面处理和胶粘剂,用于高温碳-铋-二酰亚胺复合结构的粘接修复

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摘要

Modern aircraft utilises composite structures in an increasing number of applications, including higher temperature regions to gain the benefit offered by the high stiffness and strength of composites at lower equivalent weight compared to metals. The higher temperature structure poses unique problems for on-aircraft bonded repair. Often in situ bonded repair temperatures may be limited due to the ability to heat the structure to high temperatures, caused by sub-structure acting as heat-sinks or concerns that material properties of the airframe could be compromised. Consequently, the repair adhesive needs to restore the composite laminate structure strength without the benefit of cure temperatures employed in the original construction. This paper examines suitable adhesives for high temperature bonded repair applications to composite laminate and reliable surface treatment methods for the composite laminate structure prior to bonding. Results indicate that thermal characterisation of the adhesive can provide a reliable screening method for adhesive selection and both plasma and laser treatments of the composite may increase reliability of the bonded repair strength compared to more common treatments. FM32 oxy-amide adhesive was found to be the best candidate repair adhesive examined.
机译:现代飞机在越来越多的应用中使用复合材料结构,包括高温区域,以比金属更低的等效重量获得复合材料的高刚度和强度所带来的好处。较高的温度结构对飞机上的粘合修复提出了独特的问题。通常,由于将结构加热到高温的能力,可能会限制原位粘结的修复温度,这是由子结构充当散热器引起的,或者担心机身的材料性能可能受到损害。因此,修复粘合剂需要恢复复合层压板的结构强度,而无益于原始结构中采用的固化温度。本文研究了适用于复合层压板高温粘合修复应用的粘合剂,以及复合层压板在粘合之前的可靠表面处理方法。结果表明,粘合剂的热特性可以为粘合剂的选择提供可靠的筛选方法,与更常见的处理方法相比,复合材料的等离子体和激光处理均可提高粘合修复强度的可靠性。发现FM32氧酰胺粘合剂是所检查的最佳候选修补粘合剂。

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