Electrochemical oxidation of carbon fibres: adsorption of the electrolyte and its effect on interfacial adhesion
A preliminary study indicated the adsorption of sodium hydroxide electrolyte to carbon fibre oxidised in a continuous anodic electrochemical process. The adhesion of the oxidised fibres to epoxy resin decreased with increasing amount of adsorbed NaOH. In this study, experiments were carried out to c...
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Published in | Composites. Part A, Applied science and manufacturing Vol. 33; no. 10; pp. 1361 - 1365 |
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Main Authors | , , |
Format | Journal Article Conference Proceeding |
Language | English |
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Oxford
Elsevier Ltd
01.01.2002
Elsevier |
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ISSN | 1359-835X 1878-5840 |
DOI | 10.1016/S1359-835X(02)00148-3 |
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Abstract | A preliminary study indicated the adsorption of sodium hydroxide electrolyte to carbon fibre oxidised in a continuous anodic electrochemical process. The adhesion of the oxidised fibres to epoxy resin decreased with increasing amount of adsorbed NaOH. In this study, experiments were carried out to confirm the preliminary observations. Bundles of fibres were soaked in water and both the solution and the fibre were analysed. The results proved that sodium hydroxide is removed slowly from the fibre surface, more than 20
h is needed to create a relatively clean surface. The adsorbed NaOH blocks reactive groups and hinders coupling between the matrix and the fibre. Its removal increases both the chemical and the electrochemical activity of the fibre and leads to a significant improvement of interfacial adhesion. |
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AbstractList | A preliminary study indicated the adsorption of sodium hydroxide electrolyte to carbon fibre oxidised in a continuous anodic electrochemical process. The adhesion of the oxidised fibres to epoxy resin decreased with increasing amount of adsorbed NaOH. In this study, experiments were carried out to confirm the preliminary observations. Bundles of fibres were soaked in water and both the solution and the fibre were analysed. The results proved that sodium hydroxide is removed slowly from the fibre surface, more than 20 h is needed to create a relatively clean surface. The adsorbed NaOH blocks reactive groups and hinders coupling between the matrix and the fibre. Its removal increases both the chemical and the electrochemical activity of the fibre and leads to a significant improvement of interfacial adhesion. A preliminary study indicated the adsorption of sodium hydroxide electrolyte to carbon fibre oxidised in a continuous anodic electrochemical process. The adhesion of the oxidised fibres to epoxy resin decreased with increasing amount of adsorbed NaOH. In this study, experiments were carried out to confirm the preliminary observations. Bundles of fibres were soaked in water and both the solution and the fibre were analysed. The results proved that sodium hydroxide is removed slowly from the fibre surface, more than 20 h is needed to create a relatively clean surface. The adsorbed NaOH blocks reactive groups and hinders coupling between the matrix and the fibre. Its removal increases both the chemical and the electrochemical activity of the fibre and leads to a significant improvement of interfacial adhesion. |
Author | Pukánszky, Béla Százdi, László Gulyás, János |
Author_xml | – sequence: 1 givenname: Laszlo surname: SZAZDI fullname: SZAZDI, Laszlo organization: Institute of Chemistry, Chemical Research Center, Hungarian Academy of Sciences, P.O. Box 17, 1525, Budapest, Hungary – sequence: 2 givenname: Janos surname: GULYAS fullname: GULYAS, Janos organization: Institute of Chemistry, Chemical Research Center, Hungarian Academy of Sciences, P.O. Box 17, 1525, Budapest, Hungary – sequence: 3 givenname: Béla surname: PUKANSZKY fullname: PUKANSZKY, Béla organization: Institute of Chemistry, Chemical Research Center, Hungarian Academy of Sciences, P.O. Box 17, 1525, Budapest, Hungary |
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Keywords | D. Surface analysis B. Fragmentation A. Carbon fibre B. Interface/interphase Adhesivity Electrochemical treatment Fiber reinforced material Epoxy resin Experimental study Property processing relationship Composite material Surface treatment Sodium hydroxide Interface properties Matrix fiber interface Concentration effect Oxidation Carbon fiber |
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SubjectTerms | A. Carbon fibre Applied sciences B. Fragmentation B. Interface/interphase Composites D. Surface analysis Exact sciences and technology Forms of application and semi-finished materials Polymer industry, paints, wood Technology of polymers |
Title | Electrochemical oxidation of carbon fibres: adsorption of the electrolyte and its effect on interfacial adhesion |
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