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The interfacial adhesion of poly-p-phenylene benzobisoxazole/bismaleimide composites improved by oxygen/argon plasma treatment and surface aging effects

机译:氧/氩等离子体处理和表面老化效果改善了聚对亚苯基苯并双恶唑/双马来酰亚胺复合材料的界面粘合力

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摘要

In this work, the interfacial adhesion of poly-p-phenylene benzobisoxazole/bismaleimide (PBO/BMI) composites improved by oxygen/argon plasma treatment and surface aging effects were investigated. The surface chemical compositions and the topography of the PBO fibers were analyzed using X-ray photoelectron spectroscopy and atomic force microscopy, respectively. The results showed that some active groups (e.g. carboxyl, hydroxyl and amide groups) were introduced onto the surface, and a noticeable alteration of the topography was also observed. After the PBO fibers were treated for 7. min, the interlaminar shear strength was increased to 61.6. MPa, an increase of 38.1%. Comparing the results with oxygen-only, argon-only and oxygen/argon plasma treatments, it can be inferred that the mechanical interlocking played a major role in the adhesion between the PBO fibers and the BMI resin. Through scanning electron microscopy, we found that the failure mode of the composite changed from adhesive failure to partial cohesive failure after the oxygen/argon plasma treatment. However, due to the surface aging effects, the interlaminar shear strength decreased sharply in the first few days and then, after 10. days, remained substantially constant.
机译:在这项工作中,研究了通过氧/氩等离子体处理改善的聚对亚苯基苯并双恶唑/双马来酰亚胺(PBO / BMI)复合材料的界面粘合性和表面老化效果。分别使用X射线光电子能谱和原子力显微镜分析了PBO纤维的表面化学组成和形貌。结果表明,一些活性基团(例如羧基,羟基和酰胺基)被引入到表面上,并且还观察到形貌的显着改变。将PBO纤维处理7分钟后,层间剪切强度增加到61.6。 MPa,增长38.1%。将结果与纯氧,纯氩和氧/氩等离子体处理进行比较,可以推断出机械互锁在PBO纤维与BMI树脂之间的粘合中起主要作用。通过扫描电子显微镜,我们发现,氧/氩等离子体处理后,复合材料的破坏模式从粘合破坏变为部分内聚破坏。但是,由于表面老化的影响,层间剪切强度在最初几天急剧下降,然后在10天后基本保持恒定。

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