Percolation phenomena in carbon black-filled polymeric concrete

Percolation in carbon black‐filled polymeric concrete, is discussed based on the measured changes in electrical conductivity and morphology of the composite at different concentrations of carbon black. The percolation threshold ranged between 6 and 7 wt% (based on resin weight) of carbon black. Abov...

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Published in:Polymer engineering and science Vol. 40; no. 9; pp. 2101 - 2104
Main Authors: REJON, L, ROSAS-ZAVALA, A, PORCAYO-CALDERON, J, CASTANO, V. M
Format: Journal Article
Language:English
Published: Hoboken Wiley Subscription Services, Inc., A Wiley Company 01-09-2000
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Abstract Percolation in carbon black‐filled polymeric concrete, is discussed based on the measured changes in electrical conductivity and morphology of the composite at different concentrations of carbon black. The percolation threshold ranged between 6 and 7 wt% (based on resin weight) of carbon black. Above this concentration, the filler particles formed agglomerates in contact with each other, suggesting that the conduction process is nearly ohmic in nature. A power law predicted by percolation theory described the behavior of the conductivity as a function of carbon black content. Microscopic analysis showed the presence of a continuous structure formed by the polyester resin and carbon black, in which silica particles were embedded.
AbstractList Percolation in carbon black-filled polymeric concrete, is discussed based on the measured changes in electrical conductivity and morphology of the composite at different concentrations of carbon black. The percolation threshold ranged between 6-7 wt.% (based on resin weight) of carbon black. Above this concentration, the filler particles formed agglomerates in contact with each other, suggesting that the conduction process is nearly ohmic in nature. A power law predicted by percolation theory described the behavior of the conductivity as a function of carbon black content. Microscopic analysis showed the presence of a continuous structure formed by the polyester resin and carbon black, in which silica particles were embedded.
Percolation in carbon black‐filled polymeric concrete, is discussed based on the measured changes in electrical conductivity and morphology of the composite at different concentrations of carbon black. The percolation threshold ranged between 6 and 7 wt% (based on resin weight) of carbon black. Above this concentration, the filler particles formed agglomerates in contact with each other, suggesting that the conduction process is nearly ohmic in nature. A power law predicted by percolation theory described the behavior of the conductivity as a function of carbon black content. Microscopic analysis showed the presence of a continuous structure formed by the polyester resin and carbon black, in which silica particles were embedded.
Audience Academic
Author Rejón, L.
Rosas-Zavala, A.
Castaño, V. M.
Porcayo-Calderon, J.
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Cites_doi 10.1002/actp.1979.010301004
10.1143/JJAP.36.5163
10.1002/pen.760350802
10.1002/pen.760330605
10.1007/BF00361501
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Keywords Scanning electron microscopy
Experimental result
Electrical conductivity
Percolation
Polymer concrete
Experimental study
Composite material
Carbon fiber
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Snippet Percolation in carbon black‐filled polymeric concrete, is discussed based on the measured changes in electrical conductivity and morphology of the composite at...
Percolation in carbon black-filled polymeric concrete, is discussed based on the measured changes in electrical conductivity and morphology of the composite at...
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SubjectTerms Applied sciences
Buildings. Public works
Carbon-black
Concretes. Mortars. Grouts
Electrical conductivity
Exact sciences and technology
Materials
Measurement
Percolation
Polymer modified concrete and mortar, impregnated concrete
Polymers
Testing
Title Percolation phenomena in carbon black-filled polymeric concrete
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