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Fiber finishes for improving galvanic resistance of imide-based composites

机译:用于改善酰亚胺基复合材料耐电偶性的纤维整理剂

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Galvanic corrosion resistant carbon/bismaleimide (BMI) composites have been demonstrated through the use of reactive finishes to form coatings that isolate the carbon fibers from the BMI matrix. A family of novel reactive coupling agents was formulated into phenolic-based finishes that react with carbon fibers and the matrix resin during processing to form chemical bonds at the interface and in the interphase. Each fiber is coated unifomrly with the phenolic finish before the BMI prepregging process. The finish serves to isolate the carbon fibers from the BMI matrix and interrupts the galvanic cell. Bot hstatic measurements on galvanic corrosion couples and dynamic electrochemical impendance spectroscopy measurements show that the finishes dramatically improve composite corrosion resistnace. Flexural and short beam shear strengths show that BMI matrix composites with finished fibers are equivalent to those with unsized fibers. The mechanical data is supported by voltage contrast x-ray photoelectron spectroscopy (VC-XPS) measurements and SEM failure surface analyses which show that interfacial adhesion is superior in the finished composites. This approach has the potential to substantially improve galvanic corrosion resistance of the interface in BMI matrix composites by preventing the interfacial debonding thought to be responsible for the observed reaction acceleration. The reactive finish approach provides a cost-efficient means of improving galvanic corrosion resistance in composites with any BMI formulation.
机译:通过使用反应性整理剂形成将碳纤维与BMI基质隔离的涂层,已证明了耐电腐蚀的碳/双马来酰亚胺(BMI)复合材料。将一系列新型反应性偶联剂配制成酚醛型面漆,在加工过程中与碳纤维和基体树脂发生反应,从而在界面和界面相之间形成化学键。在BMI预浸工艺之前,每根纤维都必须先用酚醛涂层进行涂覆。整理剂用于将碳纤维与BMI基质隔离并打断原电池。电偶腐蚀对的静压力测量和动态电化学阻抗谱测量表明,表面处理可以显着改善复合材料的耐腐蚀性。弯曲和短梁的剪切强度表明,具有成品纤维的BMI基体复合材料与具有未上浆纤维的BMI基体复合物相当。电压对比X射线光电子能谱(VC-XPS)测量和SEM失效表面分析支持了机械数据,这些结果表明,在最终的复合材料中界面粘合性优越。通过防止认为引起观察到的反应加速的界面剥离,该方法具有显着提高BMI基体复合材料界面的耐电偶腐蚀的潜力。反应性表面处理方法提供了一种具有成本效益的方法,可以提高任何BMI配方的复合材料的耐电偶腐蚀性能。

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