A platform for research: civil engineering, architecture and urbanism
Electrical conduction behavior of cement-matrix composites
The resistive, piezoresistive, thermoelectric and electromagnetic properties of cement matrix composites were studied. The composites were modified using admixtures such as short carbon fibers and steel fibers. Short carbon fibers were found effective in enhancing the piezoresistivity and p-type Seebeck effect. Steel fibers were effective in enhancing the n-type Seebeck effect.
Electrical conduction behavior of cement-matrix composites
The resistive, piezoresistive, thermoelectric and electromagnetic properties of cement matrix composites were studied. The composites were modified using admixtures such as short carbon fibers and steel fibers. Short carbon fibers were found effective in enhancing the piezoresistivity and p-type Seebeck effect. Steel fibers were effective in enhancing the n-type Seebeck effect.
Electrical conduction behavior of cement-matrix composites
Chung, D.D.L. (author)
Journal of Materials Engineering and Performance ; 11 ; 194-204
2002
11 Seiten, 81 Quellen
Article (Journal)
English
Advances in Cement-Matrix Composites
NTIS | 1981
|Tyre rubber/cement matrix composites
British Library Online Contents | 1993
|Measurement and modelling of conduction in carbon fibre-cement composites
Online Contents | 2011
|Micromechanics modeling of the electrical conductivity of carbon nanotube cement-matrix composites
British Library Online Contents | 2017
|Cement-matrix composites for smart structures
British Library Online Contents | 2000
|