We study the rotational dynamics of magnetic prolate elliptical particles in a simple shear flow subjected to a uniform magnetic field, using direct numerical simulations based on the finite element method. Focusing on paramagnetic and ferromagnetic particles, we investigate the effects of the magnetic field strength and direction on their rotational dynamics. In the weak field regime (below a critical field strength), the particles are able to perform complete rotations, and the symmetry property of particle rotational speed is influenced by the direction and strength of the magnetic field. In the strong field regime (above a critical strength), the particles are pinned at steady angles. The steady angle depends on both the direction and s...
“Magnetic particles and droplets have been used in a wide range applications including biomedicine, ...
We numerically investigate the dynamics of a pair of circular Janus microparticles immersed in a New...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...
This work reports numerical investigation of lateral migration of a paramagnetic microparticle of an...
This work reports numerical investigation of lateral migration of a paramagnetic microparticle of an...
We investigate the two-dimensional dynamic motion of magnetic particles of ellipsoidal shapes in she...
Under a uniform magnetic field, magnetic particles tend to form chains, clusters or columns due to p...
We examine a time-dependent, three-dimensional rotation of magnetic ellipsoidal particles in a two-d...
A two-dimensional direct simulation method, based on the Maxwell stress tensor and a fictitious doma...
A two-dimensional direct simulation method, based on the Maxwell stress tensor and a fictitious doma...
A two-dimensional direct simulation method, based on the Maxwell stress tensor and a fictitious doma...
A two-dimensional direct simulation method, based on the Maxwell stress tensor and a fictitious doma...
A two-dimensional direct simulation method, based on the Maxwell stress tensor and a fictitious doma...
Magnetic manipulation of non-spherical magnetic microparticles is important for applications in shap...
We numerically investigated the particle-particle interaction and relative motion of a pair of equal...
“Magnetic particles and droplets have been used in a wide range applications including biomedicine, ...
We numerically investigate the dynamics of a pair of circular Janus microparticles immersed in a New...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...
This work reports numerical investigation of lateral migration of a paramagnetic microparticle of an...
This work reports numerical investigation of lateral migration of a paramagnetic microparticle of an...
We investigate the two-dimensional dynamic motion of magnetic particles of ellipsoidal shapes in she...
Under a uniform magnetic field, magnetic particles tend to form chains, clusters or columns due to p...
We examine a time-dependent, three-dimensional rotation of magnetic ellipsoidal particles in a two-d...
A two-dimensional direct simulation method, based on the Maxwell stress tensor and a fictitious doma...
A two-dimensional direct simulation method, based on the Maxwell stress tensor and a fictitious doma...
A two-dimensional direct simulation method, based on the Maxwell stress tensor and a fictitious doma...
A two-dimensional direct simulation method, based on the Maxwell stress tensor and a fictitious doma...
A two-dimensional direct simulation method, based on the Maxwell stress tensor and a fictitious doma...
Magnetic manipulation of non-spherical magnetic microparticles is important for applications in shap...
We numerically investigated the particle-particle interaction and relative motion of a pair of equal...
“Magnetic particles and droplets have been used in a wide range applications including biomedicine, ...
We numerically investigate the dynamics of a pair of circular Janus microparticles immersed in a New...
Considerable efforts have been spent in the development of magnetic nanoparticles (MNPs) in the last...