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Use of automated in-line capable magnetic stray field measurement method for monitoring the value chain quality of magnetic circuits

机译:使用自动串联能干磁场磁场测量方法监测磁路的价值链质量

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Common defects in electromagnetic actuators due to the manufacturing process are heterogeneous magnetic properties of the materials, cracks and defects in the magnetic materials and parasitic air gaps in and directly around the magnetic circuit. In most cases the error cause can be found in the value chain and is caused by material handling, assembling tolerances, environmental influences, etc. Considering the high global cost pressure, test systems must be adapted to the increasing complexity of the components in order to be able to detect defects completely in-situ and have smallest possible amortization period. For these requirements the novel and nondestructive measurement system is suitable to monitor and assure quality of magnetic actuators within the manufacturing process. The measuring principle is the characterization of electromagnetic actuators according to the detection of magnetic stray fields outside the magnetic circuit and the magnetic useful field inside the actuator that can be quantified by magnetic sensors. The intensity of the magnetic stray fields depends on the magnetic flux density and flux distribution in the magnetic circuit. Permeability variations for example caused by air gaps or internal stresses influence the flux distribution. In most cases they are caused by process parameter variations of the manufacturing and assembling. With the developed method this influences can be detected in an early stage of the manufacturing process automatically and in-line. This can lead to more competitiveness and long-term viability of the location.
机译:由于制造过程引起的电磁致动器中的常见缺陷是磁性材料中的材料,裂缝和缺陷的异质磁性,并且寄生气隙并直接围绕磁路。在大多数情况下,在价值链中可以找到错误原因,并且是由材料处理,组装公差,环境影响等引起的考虑到高全球成本压力,测试系统必须适应增加组件的复杂性以便能够完全原位检测缺陷并具有最小可能的摊销期。对于这些要求,新颖和非破坏性测量系统适用于监测和确保制造过程中的磁性执行器的质量。测量原理是根据磁路外部的磁场场的检测和磁传感器内部的磁性有用场的检测来表征电磁致动器的表征,其可以通过磁传感器量化。磁杂交场的强度取决于磁路中的磁通密度和磁通量分布。例如由气隙或内应力引起的渗透率变化影响助焊剂分布。在大多数情况下,它们是由制造和组装的过程参数变化引起的。利用开发方法,可以在制造过程的早期和在线中在制造过程的早期检测到这种影响。这可能导致该地点的更多竞争力和长期可行性。

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