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Analysis of Electrical Resistance and Impedance Change of Magnetorheological Gels with DC and AC Voltage for Magnetometer Application

机译:磁流变仪用直流和交流电压的磁流变凝胶的电阻和阻抗变化分析。

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摘要

Magnetorheological gel (MRG) is a smart material that can change its stiffness property by external magnetic field and has been applied as a smart rubber in suppressing vibration. Recent studies show that the electrical resistance of MRG also can be affected with external magnetic field. Thus, this study aimed to conduct analysis on MRG resistance variation due to external magnetic field with DC and AC input voltage. With an DC input voltage, the resistance change due to magnetic field was modeled. In addition, the capacitance variation of the material was observed. The impedance of MRG due to AC input voltage was analyzed and was observed that the impedance of MRG was affected by both the magnetic field and the input frequency. With the experiment data, the impedance modeling of MRG in frequency domain was derived. Based on experiment results, the performance and limitation of MRG as a magnetometer sensor are discussed.
机译:磁流变凝胶(MRG)是一种可以通过外部磁场改变其刚度特性的智能材料,并已被用作抑制振动的智能橡胶。最近的研究表明,MRG的电阻也会受到外部磁场的影响。因此,本研究旨在分析直流和交流输入电压引起的外部磁场引起的MRG电阻变化。在直流输入电压下,模拟了由于磁场引起的电阻变化。另外,观察到材料的电容变化。分析了由交流输入电压引起的MRG的阻抗,发现MRG的阻抗受磁场和输入频率的影响。利用实验数据,推导了MRG的频域阻抗模型。根据实验结果,对MRG作为磁力计传感器的性能和局限性进行了探讨。

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