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 inComposites. Part A, Applied science and manufacturing Vol. 33; no. 10; pp. 1361 - 1365
Main Authors SZAZDI, Laszlo, GULYAS, Janos, PUKANSZKY, Béla
Format Journal Article Conference Proceeding
LanguageEnglish
Published Oxford Elsevier Ltd 01.01.2002
Elsevier
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Online AccessGet full text
ISSN1359-835X
1878-5840
DOI10.1016/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.
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
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  givenname: Béla
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  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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Issue 10
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
Language English
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Snippet A preliminary study indicated the adsorption of sodium hydroxide electrolyte to carbon fibre oxidised in a continuous anodic electrochemical process. The...
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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
URI https://dx.doi.org/10.1016/S1359-835X(02)00148-3
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