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Characterization of magnetic actuators by measuring of magnetic stray fields with GMR-sensors

机译:通过使用GMR传感器测量杂散磁场来表征磁性执行器

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Common defects in electromagnetic actuators due to manufacturing are heterogeneous magnetic properties of materials, cracks and defects in the flux guiding magnets and parasitic air gaps in and directly around the magnetic circuit. Considering the high cost pressure, test systems must adapt to the increasing complexity of the components and detect defects completely in-situ. For these requirements the novel and nondestructive measurement system is suitable to monitor and assure the quality of magnetic actuators within the manufacturing process. The measuring principle is based on the characterization of the magnetic circuit according to the magnetic stray fields that can be quantified by magnetoelectronic GMR-elements outside the circuit. GMR sensors are particularly suited due to their measurement range and their linearity. Their measurement range coincides with the magnetic stray fields which were demonstrated by magnetic field simulation of electromagnetic actuators.
机译:由于制造而引起的电磁致动器中的常见缺陷是材料的异质磁性能,通量导向磁体中的裂纹和缺陷以及磁路中和磁路周围的寄生气隙。考虑到高昂的成本压力,测试系统必须适应不断增加的组件复杂性并完全就地检测缺陷。对于这些要求,新颖且无损的测量系统适用于在制造过程中监控并确保电磁执行器的质量。该测量原理基于根据磁杂散场对磁路的表征,该杂散磁场可由电路外部的磁电子GMR元素量化。 GMR传感器的测量范围和线性度使其特别适用。它们的测量范围与电磁致动器的磁场仿真所证明的杂散磁场一致。

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