Structured elastomeric composites (SECs) with electrically conductive fillers display anisotropic piezoresistivity. The fillers do not form string-of-particle structures but pseudo-chains formed by grouping micro-sized clusters containing nanomagnetic particles surrounded by noble metals (e.g. silver, Ag). The pseudo-chains are formed when curing or preparing the composite in the presence of a uniform magnetic field, thus pseudo-chains are aligned in the direction of the field. The electrical conduction through pseudo-chains is analyzed and a constitutive model for the anisotropic reversible piezoresistivity in SECs is proposed. Several effects and characteristics, such as electron tunnelling, conduction inside the pseudo-chains, and chain-...
Piezoresistivity in conductive polymer nanocomposites occurs because of the disturbance of particle ...
Composite material constituted by Fe micro-particles homogeneously dispersed in a silicone matrix, a...
This work presents a comparison between three piezoresistive composite materials based on nanostruct...
A constitutive model for the anisotropic magnetoresistivity in structured elastomer composites (SECs...
An anisotropic magnetorheological composite formed by dispersions of silver-covered magnetite microp...
Los Compositos Elastoméricos Estructurados (SEC, por sus siglas en inglés) están formados por disper...
Magnetorheological elastomers, MREs, based on elastic organic matrices displaying anisotropic magnet...
Structured elastomer films (100?150 mm) presenting piezo and magneto resistance are described. The f...
Magnetorheological elastomers, MREs, based on elastic organic matrices displaying anisotropic magnet...
A flexible, anisotropic and portable stress sensor (logarithmic reversible response between 40–350 k...
Ni microparticles were homogeneously dispersed into a silicone matrix preventing their direct contac...
International audienceMagnetorheological elastomers (MRE) are smart materials made by aligning magne...
The piezoresistivity in a heterogeneous material formed by conducting nickel particles uniformly dis...
If the electrical resistance of a material depends upon external straining, the material exhibits ‘p...
Magnetorheological composites made of iron micro-particles dispersed, near the percolation threshold...
Piezoresistivity in conductive polymer nanocomposites occurs because of the disturbance of particle ...
Composite material constituted by Fe micro-particles homogeneously dispersed in a silicone matrix, a...
This work presents a comparison between three piezoresistive composite materials based on nanostruct...
A constitutive model for the anisotropic magnetoresistivity in structured elastomer composites (SECs...
An anisotropic magnetorheological composite formed by dispersions of silver-covered magnetite microp...
Los Compositos Elastoméricos Estructurados (SEC, por sus siglas en inglés) están formados por disper...
Magnetorheological elastomers, MREs, based on elastic organic matrices displaying anisotropic magnet...
Structured elastomer films (100?150 mm) presenting piezo and magneto resistance are described. The f...
Magnetorheological elastomers, MREs, based on elastic organic matrices displaying anisotropic magnet...
A flexible, anisotropic and portable stress sensor (logarithmic reversible response between 40–350 k...
Ni microparticles were homogeneously dispersed into a silicone matrix preventing their direct contac...
International audienceMagnetorheological elastomers (MRE) are smart materials made by aligning magne...
The piezoresistivity in a heterogeneous material formed by conducting nickel particles uniformly dis...
If the electrical resistance of a material depends upon external straining, the material exhibits ‘p...
Magnetorheological composites made of iron micro-particles dispersed, near the percolation threshold...
Piezoresistivity in conductive polymer nanocomposites occurs because of the disturbance of particle ...
Composite material constituted by Fe micro-particles homogeneously dispersed in a silicone matrix, a...
This work presents a comparison between three piezoresistive composite materials based on nanostruct...