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- W2987339922 abstract "Hysteresis loops of magnetoactive elastomers (MAE) exhibit several peculiar features, including low coercivity in comparison with mechanically hard materials and a striking mismatch between first consecutive magnetization loops. The difference between loops diminishes during cycling of the applied magnetic field, thus displaying a training effect. The article presents the results of our research on a hypothesis explaining this phenomenon. Magnetization of a multigrain ferromagnetic particle is modeled at fields not exceeding the anisotropy field of the constituent grain material. It is shown that because of rotation of particles in an elastomer matrix, different branches of their hysteresis loops stem from the magnetization switching of different grain groups. This process is illustrated in detail by use of simple systems with a small number of grains. The results of simulation are supported with magnetic measurements of both MAE samples and epoxied powder. Coercivity of the modeled trained loops is in the order-of-magnitude agreement with the experiment." @default.
- W2987339922 created "2019-11-22" @default.
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- W2987339922 date "2020-02-01" @default.
- W2987339922 modified "2023-10-18" @default.
- W2987339922 title "Training effect in magnetoactive elastomers due to undermagnetization of magnetically hard filler" @default.
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- W2987339922 doi "https://doi.org/10.1016/j.physb.2019.411866" @default.
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