A computer simulation method has been used to study the three-dimensional structural formation and transition of eleetromagnetorheological (EMR) suspensions under compatible electric and magnetic fields. When the fields are applied simultaneously and perpendicularly to each other, the particles rapidly arrange into single layer structures parallel to both fields. In each layer, there is a two-dimensional hexagonal lattice. The single layers then combine together to form thicker sheetlike structures. With the help of the thermal fluctuations, the thicker structures relax into three-dimensional close-packed structures, which may be face-centered cubic (fcc), hexagonal close-packed (hup) lattices, or, more probably, the mixture of them, depend...
The electrorheological (ER) response is the dramatic and reversible change in the rheological proper...
*Author to whom correspondence should be addressed. ABSTRACT: Concentration patterns of the magnetic...
A lamellar pattern can form in a thin magnetic fluid layer when the applied electric field is above ...
The computer simulation method has been used to study the structural formation and transition of ele...
The structure formation of particles with induced dipoles dispersed in a viscous fluid, under a spat...
The structure formation of particles with induced dipoles dispersed in a viscous fluid, under a spat...
The structure formation of particles with induced dipoles dispersed in a viscous fluid, under a spat...
The structure formation of particles with induced dipoles dispersed in a viscous fluid, under a spat...
The effect of time-dependent external fields on the structures formed by particles with induced dipo...
We have observed two- and three-dimensional ordered structures in electro-magnetorheological fluids ...
When colloidal suspensions of magnetic particles are submitted to a magnetic field they undergo a ph...
ABSTRACT: The chain formation process of ferromagnetic particles under an applied magnetic field is ...
Common electrorheological (ER) fluids are suspensions of simple dielectric particles in non-conducti...
The three-dimensional molecular dynamics simulation method has been used to study the dynamic respon...
The electrorheological (ER) response is the dramatic and reversible change in the rheological proper...
The electrorheological (ER) response is the dramatic and reversible change in the rheological proper...
*Author to whom correspondence should be addressed. ABSTRACT: Concentration patterns of the magnetic...
A lamellar pattern can form in a thin magnetic fluid layer when the applied electric field is above ...
The computer simulation method has been used to study the structural formation and transition of ele...
The structure formation of particles with induced dipoles dispersed in a viscous fluid, under a spat...
The structure formation of particles with induced dipoles dispersed in a viscous fluid, under a spat...
The structure formation of particles with induced dipoles dispersed in a viscous fluid, under a spat...
The structure formation of particles with induced dipoles dispersed in a viscous fluid, under a spat...
The effect of time-dependent external fields on the structures formed by particles with induced dipo...
We have observed two- and three-dimensional ordered structures in electro-magnetorheological fluids ...
When colloidal suspensions of magnetic particles are submitted to a magnetic field they undergo a ph...
ABSTRACT: The chain formation process of ferromagnetic particles under an applied magnetic field is ...
Common electrorheological (ER) fluids are suspensions of simple dielectric particles in non-conducti...
The three-dimensional molecular dynamics simulation method has been used to study the dynamic respon...
The electrorheological (ER) response is the dramatic and reversible change in the rheological proper...
The electrorheological (ER) response is the dramatic and reversible change in the rheological proper...
*Author to whom correspondence should be addressed. ABSTRACT: Concentration patterns of the magnetic...
A lamellar pattern can form in a thin magnetic fluid layer when the applied electric field is above ...