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Evaluation of carbon fiber surface treated by chemical and cold plasma processes

机译:化学和冷等离子体处理的碳纤维表面评估

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Sized PAN-based carbon fibers were treated with hydrochloric and nitric acids, as well as argon and oxygen cold plasmas, and the changes on their surfaces evaluated. The physicochemical properties and morphological changes were investigated by atomic force microscopy (AFM), scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), tensile strength tests and Raman spectroscopy. The nitric acid treatment was found to cause the most significant chemical changes on the carbon fiber surface, introducing the largest number of chemical groups and augmenting the roughness. The oxygen plasma treatments caused ablation of the carbon fiber surface, removing carbon atoms such as CO and CO2 molecules. In addition, the argon plasma treatment eliminated defects on the fiber surface, reducing the size of critical flaws and thus increasing the fiber's tensile strength.
机译:用盐酸和硝酸以及氩和氧冷等离子体处理定径的PAN基碳纤维,并评估其表面变化。通过原子力显微镜(AFM),扫描电子显微镜(SEM),X射线光电子能谱(XPS),拉伸强度测试和拉曼光谱研究了理化性质和形态变化。发现硝酸处理会在碳纤维表面上引起最显着的化学变化,引入最多的化学基团并增加粗糙度。氧等离子体处理引起碳纤维表面的烧蚀,去除了碳原子,例如CO和CO2分子。另外,氩等离子体处理消除了纤维表面上的缺陷,减小了关键缺陷的尺寸,从而提高了纤维的拉伸强度。

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