Publications by authors named "Oleg V Stolbov"

Article Synopsis
  • A mesoscopic model is created for a polymer-based magnetoelectric composite film, consisting of a PVDF polymer matrix filled with CFO-like nanoparticles.
  • The model helps analyze key factors like poling direction and magnetic anisotropy, revealing detailed distributions of mechanical stress, polarization, and electric potential.
  • The findings highlight that the magnetoelectric effect in composite films arises from both magnetostrictive and magnetoactive contributions, emphasizing the importance of considering the latter in modeling and interpreting experimental results.
View Article and Find Full Text PDF

In this work the behavior of a three-component composite multiferroic (MF)-an electrically neutral polymer matrix filled with a mixture of piezoelectric and ferromagnetic micrometer-size particles-is investigated in the framework of a simple mesoscopic model. The main issue of interest is the electric polarization generated in a thin film of such an MF in response to a quasistatic magnetic field. The driving mechanism of the effect is rotation of magnetically hard particles inside the matrix which, in turn, transfers the arisen mechanical stresses to the piezoelectric grains.

View Article and Find Full Text PDF

We analyze theoretically the field-induced microstructural deformations in a hybrid elastomer, that consists of a polymer matrix filled with a mixture of magnetically soft and magnetically hard spherical microparticles. These composites were introduced recently in order to obtain a material that allows the tuning of its properties by both, magnetically active and passive control. Our theoretical analysis puts forward two complementary models: a continuum magnetomechanical model and a bead-spring computer simulation model.

View Article and Find Full Text PDF