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Modeling the effects of torsional stress on hysteretic magnetization

机译:模拟扭转应力对磁滞磁化的影响

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Opposite torques applied axially to a polycrystalline ferromagnetic rod result in tensile and compressive stresses acting perpendicularly at the rod surface at 45/spl deg/ to the rod axis. These stresses affect the magnetization of the rod when a magnetic field is applied parallel to the rod axis. It is shown how one can formulate the magnetomechanical hysteresis model so as to treat this special case of biaxial stress and take into account the effect of opposite torques on the magnetic properties of the rod. Variation of hysteresis parameters such as coercive field, remanent flux density, differential permeability at the coercive field, and hysteresis loss as a function of applied torque are determined from the model. In the model, the torque is applied first and then the field is cycled to give hysteresis loops. It is found that the torque dependence of the magnetic properties is different, depending on what is chosen for H/sub max/, the maximum value of the applied magnetic field H. The best parameter to use for tracking the torque is found to be H/sub c/ at saturation or near saturation, since that parameter shows an almost linear decrease with the applied torque.
机译:轴向施加在多晶铁磁棒上的相反转矩会导致拉伸应力和压缩应力垂直作用于棒表面,且垂直于棒轴的角度为45 / spl deg /。当平行于棒轴施加磁场时,这些应力会影响棒的磁化强度。它显示了如何建立磁机械滞后模型,以便处理这种双轴应力的特殊情况,并考虑了相反转矩对杆的磁性能的影响。从模型中确定了磁滞参数的变化,例如矫顽场,剩余磁通密度,矫顽场处的磁导率差以及磁滞损耗作为施加转矩的函数。在模型中,首先施加扭矩,然后将磁场循环以产生磁滞回线。已经发现,取决于所选择的施加磁场H的最大值H / sub max /的不同,磁性能对转矩的依赖性是不同的。发现用于跟踪转矩的最佳参数是H / sub c /处于饱和或接近饱和时,因为该参数显示随所施加的扭矩几乎呈线性下降。

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