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Magnetic Field Dependent Damping of Magnetic Particle Filled Polypropylene

机译:磁场填充聚丙烯磁场依赖性阻尼

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The behavior of internal friction Q~(-1) and dynamic shear modulus has been studied in polypropylene charged with either different volume fraction or size of magnetite (Fe_3O_4) particles, as a function of the applied magnetic field at 318 K. An increase of the alternating (AC) magnetic field oscillating with 50 Hz, leads to an increase of the internal friction. In addition, during the subsequently decreasing alternating magnetic field, the internal friction decreases, but a hysteretic behavior appeared. In fact, the internal friction of the decreasing part of magnetic field amplitude is found to be smaller than during the previously increasing amplitude part of the treatment with the alternating magnetic field. Subsequent magnetic treatment cycles, lead to successively decreasing internal friction. In contrast, during the increase of a direct (DC) magnetic field, the internal friction decreases and the elastic modulus increases. The behavior of the internal friction and the elastic modulus during the application of an oscillating magnetic field (AC) is discussed on the basis of the development of both, a new zone with different rheological characteristics than the matrix but of the same material (self inclusion), and/or a deteriorated or damaged zone (chain's cuts) of the polymer matrix in the neighborhood of the magnetite inclusion. These effects are promoted by the movement or small relative rotation of the magnetite particles related to the surrounding matrix controlled by the oscillating field. The behavior of the internal friction and elastic modulus during the application of a direct (DC) magnetic field is discussed on the basis of the increase of the internal stresses into the polymer matrix due to the promotion of the magnetomechanical stresses.
机译:在具有不同体积分数或磁铁矿(Fe_3O_4)颗粒的聚丙烯中,研究了内部摩擦Q〜(-1)和动态剪切模量的行为,作为施加的磁场在318k的施加磁场的函数中用50Hz振荡的交替(AC)磁场导致内部摩擦的增加。另外,在随后的交替磁场减小期间,内部摩擦降低,但出现了滞后行为。实际上,发现磁场幅度的减小部分的内部摩擦量小于使用交替磁场的先前增加的处理的幅度部分期间。随后的磁性处理循环,导致内部摩擦连续降低。相反,在直接(DC)磁场的增加期间,内部摩擦降低,弹性模量增加。在施加振荡磁场(AC)期间的内部摩擦和弹性模量的行为在基于两者的发展的基础上讨论了具有比基质不同的流变特性的新区,但是相同的材料(自包含),和/或聚合物基质的劣化或受损区域(链条的切口)在磁铁矿夹杂物附近的聚合物基质中。通过与由振荡场控制的周围矩阵相关的磁铁矿颗粒的运动或小相对旋转来促进这些效果。基于磁力学应力的促进,基于磁力学应力的促进来讨论在施加直接(DC)磁场期间的内部摩擦和弹性模量在施加直接(DC)磁场期间。

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