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Effect of atmospheric pressure plasma treatment for repair of polymer matrix composite for aerospace applications

机译:大气压等离子体处理对航空航天用聚合物基复合材料修复的影响

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摘要

This paper investigates the repair of polymer matrix composites and validates the repair by static testing. Scarf repair is carried out on the laminates and cured under vacuum. It is observed that 80% of tensile strength is recovered due to this process. Therefore, this investigation highlights the significance of atmospheric pressure plasma treatment on repair of graphite epoxy laminate. It is observed that the surface energy of graphite epoxy laminate has improved significantly due to atmospheric pressure plasma treatment. Atmospheric pressure plasma treatment results in noteworthy increase in oxygen functionalities as detected by X-ray photoelectron spectroscopy, as well as surface roughness as detected by atomic force microscopy. The improvement in adhesion properties is correlated with lap shear strength of adhesive bonded joints and mode of failure has been analyzed by scanning electron microscopy. The plasma-treated laminates, when used for repair, provided an additional 12% in the tensile strength and thereby retaining a strength increase up to 92%.
机译:本文研究了聚合物基复合材料的修复,并通过静态测试验证了修复效果。在层压板上进行围巾修复,并在真空下固化。观察到由于该过程恢复了80%的拉伸强度。因此,这项研究突出了大气压等离子体处理对修复环氧环氧层压板的重要性。观察到由于大​​气压等离子体处理,石墨环氧层压板的表面能显着提高。大气压等离子体处理可显着提高X射线光电子能谱法检测到的氧官能度,以及原子力显微镜检测到的表面粗糙度。粘合性能的改善与粘合接头的搭接剪切强度有关,并且已经通过扫描电子显微镜分析了失效模式。经过等离子处理的层压板用于修复时,可提供额外的12%拉伸强度,从而保持高达92%的强度增长。

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