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FEM Simulations of Incremental Permeability Signals of a Multi-Layer Steel With Consideration of the Hysteretic Behavior of Each Layer

机译:考虑层间滞回特性的多层钢增量渗透率信号的有限元模拟

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摘要

Shafts for power generation machines have to be inspected in regards to the mechanical–technological properties of the final product material. To save time and costs, the nondestructive 3MA technique, which is based on the measurement of electromagnetic properties of the inspected material, should be used for this purpose. Due to the machining process, the material shows a Multilayer structure with different residual stress levels, each characterized by its own electromagnetic properties. To simulate signals of the so-called incremental permeability mode of 3MA, the individual electromagnetic properties had to be determined first. Subsequently, FEM methods have been developed, overcoming issues with respect to multiscale geometry and time, and the local hysteretic behavior identification at every point in the material under investigation. The developed computation strategy and the modeling assumptions are validated by a comparison of the numerical simulations with measurements and shows promising results.
机译:发电机器的轴必须根据最终产品材料的机械技术特性进行检查。为了节省时间和成本,应将无损3MA技术用于此目的,该技术基于被检材料电磁性能的测量。由于加工过程的原因,该材料显示出具有不同残余应力水平的多层结构,每种结构都有其自身的电磁特性。为了模拟所谓的3MA增量磁导率模式的信号,必须首先确定各个电磁性能。随后,人们开发了有限元方法,克服了有关多尺度几何形状和时间以及在研究材料中每个点的局部滞后行为识别方面的问题。通过将数值模拟与测量结果进行比较,可以验证所开发的计算策略和建模假设,并显示出令人鼓舞的结果。

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