Effect of carbon black content on the swelling of elastomers in solvent in the presence of static mechanical loading

The effect of carbon black on the mechanical properties of elastomers is of great interest because filler is one of the necessity items for manufacturing of rubber products. While fillers can be used to enhance the properties of elastomers, it is known that filler yields to significant inelastic res...

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Main Authors: Ch'ng, S.Y., Andriyana, A., Tee, Y.L., Verron, E.
Format: Article
Published: Maney Publishing 2014
Subjects:
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author Ch'ng, S.Y.
Andriyana, A.
Tee, Y.L.
Verron, E.
author_facet Ch'ng, S.Y.
Andriyana, A.
Tee, Y.L.
Verron, E.
author_sort Ch'ng, S.Y.
collection UM
description The effect of carbon black on the mechanical properties of elastomers is of great interest because filler is one of the necessity items for manufacturing of rubber products. While fillers can be used to enhance the properties of elastomers, it is known that filler yields to significant inelastic responses such as stress-softening, hysteresis and permanent set. Moreover, under tensile loading, the filler acts as a strain amplifier in the rubber matrix resulting in a higher local strain state in the matrix as compared to the applied macroscopic strain. The study of the effect of carbon black content on the swelling characteristics of elastomeric components undergoing mechanical loading and simultaneously exposed to aggressive solvent is a prerequisite for durability analysis. The present study investigates the effect of carbon black content on the swelling of elastomers in solvent in the absence and in the presence of static tensile loadings.
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spelling um.eprints-154762015-12-31T00:37:36Z http://eprints.um.edu.my/15476/ Effect of carbon black content on the swelling of elastomers in solvent in the presence of static mechanical loading Ch'ng, S.Y. Andriyana, A. Tee, Y.L. Verron, E. Q Science (General) The effect of carbon black on the mechanical properties of elastomers is of great interest because filler is one of the necessity items for manufacturing of rubber products. While fillers can be used to enhance the properties of elastomers, it is known that filler yields to significant inelastic responses such as stress-softening, hysteresis and permanent set. Moreover, under tensile loading, the filler acts as a strain amplifier in the rubber matrix resulting in a higher local strain state in the matrix as compared to the applied macroscopic strain. The study of the effect of carbon black content on the swelling characteristics of elastomeric components undergoing mechanical loading and simultaneously exposed to aggressive solvent is a prerequisite for durability analysis. The present study investigates the effect of carbon black content on the swelling of elastomers in solvent in the absence and in the presence of static tensile loadings. Maney Publishing 2014 Article PeerReviewed Ch'ng, S.Y. and Andriyana, A. and Tee, Y.L. and Verron, E. (2014) Effect of carbon black content on the swelling of elastomers in solvent in the presence of static mechanical loading. Materials Research Innovations, 18 (S6). pp. 314-317.
spellingShingle Q Science (General)
Ch'ng, S.Y.
Andriyana, A.
Tee, Y.L.
Verron, E.
Effect of carbon black content on the swelling of elastomers in solvent in the presence of static mechanical loading
title Effect of carbon black content on the swelling of elastomers in solvent in the presence of static mechanical loading
title_full Effect of carbon black content on the swelling of elastomers in solvent in the presence of static mechanical loading
title_fullStr Effect of carbon black content on the swelling of elastomers in solvent in the presence of static mechanical loading
title_full_unstemmed Effect of carbon black content on the swelling of elastomers in solvent in the presence of static mechanical loading
title_short Effect of carbon black content on the swelling of elastomers in solvent in the presence of static mechanical loading
title_sort effect of carbon black content on the swelling of elastomers in solvent in the presence of static mechanical loading
topic Q Science (General)
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