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Surface modification of high-performance polyimide fibers by oxygen plasma treatment

机译:氧等离子体处理高性能聚酰亚胺纤维的表面改性

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摘要

In order to improve the interfacial compatibility between the fibers and epoxy resins, polyimide (PI) fibers were modified using oxygen plasma with various treatment powers. The properties of PI fibers before and after surface modification were comparatively characterized according to their chemical composition, surface morphology, surface free energy, single filament tensile strength, and interfacial shear strength (IFSS). Most of the fiber properties, including the ratio of oxygen to nitrogen, oxygen concentration, surface free energy, and IFSS firstly increased with the plasma power, and then decreased when the plasma power was higher than 120 W. With a plasma power of 120 W, the oxygen concentration and the ratio of oxygen to carbon atoms (O/C) was 26% (22% for untreated fiber) and 0.38 (0.28 for untreated fiber), respectively. Meanwhile, the values of surface free energy and IFSS were 89% and 30% higher than those for untreated fiber, respectively. Furthermore, the values of single filament tensile strength for modified fibers were only 2.3% lower than those for pristine one. These results indicated that the compatibility between PI fibers and epoxy resins was greatly improved without compromising mechanical properties.
机译:为了提高纤维和环氧树脂之间的界面相容性,使用具有各种处理能力的氧等离子体改性聚酰亚胺(PI)纤维。表面改性前后PI纤维的性质根据其化学成分,表面形貌,表面自由能,单长丝拉伸强度和界面剪切强度(IFSS)相对特征。大多数纤维性质,包括氧与氮气的比率,氧浓度,表面自由能和IFSS首先随着等离子体功率增加,然后当等离子体功率高于120W时减小。等离子体功率为120W ,氧浓度和氧气与碳原子(O / C)的比例为26%(未处理纤维的22%),分别为0.38(未处理纤维0.28)。同时,表面自由能量和IFSS的值分别比未处理纤维的89%和30%高。此外,用于改性纤维的单丝拉伸强度的值仅比原始纤维低2.3%。这些结果表明,在不损害机械性能的情况下,Pi纤维和环氧树脂之间的相容性大大提高。

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