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Magnetic and viscoelastic response of elastomers with hard magnetic filler

机译:含硬磁性填料的弹性体的磁和粘弹性响应

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Magnetic elastomers (MEs) based on a silicone matrix and magnetically hard NdFeB particles have been synthesized and their magnetic and viscoelastic properties have been studied depending on the size and concentration of magnetic particles and the magnetizing field. It has been shown that magnetic particles can rotate in soft polymer matrix under applied magnetic field, this fact leading to some features in both magnetic and viscoelastic properties. In the maximum magnetic field used magnetization of MEs with smaller particles is larger while the coercivity is smaller due to higher mobility of the particles within the polymer matrix. Viscoelastic behavior is characterized by long relaxation times due to restructuring of the magnetic filler under the influence of an applied mechanical force and magnetic interactions. The storage and loss moduli of magnetically hard elastomers grow significantly with magnetizing field. The magnetic response of the magnetized samples depends on the mutual orientation of the external magnetic field and the internal sample magnetization. Due to the particle rotation within the polymer matrix, the loss factor increases abruptly when the magnetic field is turned on in the opposite direction to the sample magnetization, further decreasing with time. Moduli versus field dependences have minimum at non-zero field and are characterized by a high asymmetry with respect to the field direction.
机译:合成了基于硅树脂基质和磁性硬NdFeB颗粒的磁性弹性体(ME),并根据磁性颗粒的大小和浓度以及磁化场研究了它们的磁性和粘弹性。已经表明,磁性粒子可以在施加的磁场下在软聚合物基质中旋转,这一事实导致了磁性和粘弹性的一些特征。在最大磁场中,由于颗粒在聚合物基质中的较高迁移率,具有较小颗粒的ME的磁化强度较大,而矫顽力较小。粘弹性行为的特征在于,由于在施加的机械力和磁相互作用的作用下磁性填料的重组,弛豫时间长。磁性硬弹性体的存储模量和损耗模量随磁化场显着增长。磁化样品的磁响应取决于外部磁场和内部样品磁化的相互取向。由于聚合物基体内的粒子旋转,当磁场以与样品磁化强度相反的方向打开时,损耗因子突然增加,并随时间进一步减小。模量与场的相关性在非零场处最小,其特征在于相对于场方向的高度不对称性。

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