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定向中子暗场成像可视化激光划线对取向电工钢磁畴形成的影响。

The influence of laser scribing on magnetic domain formation in grain oriented electrical steel visualized by directional neutron dark-field imaging.

机构信息

Laser Ablation and Cutting, Fraunhofer IWS, Dresden, Germany.

Laboratory for Neutron Scattering and Imaging, Paul Scherrer Institute, CH-5232 Villigen-PSI, Switzerland.

出版信息

Sci Rep. 2016 Dec 2;6:38307. doi: 10.1038/srep38307.

Abstract

The performance and degree of efficiency of transformers are directly determined by the bulk magnetic properties of grain oriented electrical steel laminations. The core losses can be improved by post manufacturing methods, so-called domain refinement techniques. All these methods induce mechanical or thermal stress that refines the domain structure. The most commonly used technique is laser scribing due to the no-contact nature and the ease of integration in existing production systems. Here we show how directional neutron dark-field imaging allows visualizing the impact of laser scribing on the bulk and supplementary domain structure. In particular, we investigate the domain formation during magnetization of samples depending on laser treatment parameters such as laser energy and line distances. The directional dark-field imaging findings were quantitatively interpreted in the context with global magnetic hysteresis measurements. Especially we exploit the orientation sensitivity in the dark-field images to distinguish between different domain structures alignment and their relation to the laser scribing process.

摘要

变压器的性能和效率程度直接由取向电工钢片的体磁性能决定。通过后制造方法,即所谓的畴细化技术,可以提高铁芯损耗。所有这些方法都会引起机械或热应力,从而细化畴结构。由于非接触性和易于集成到现有生产系统中,最常用的技术是激光划线。在这里,我们展示了定向中子暗场成像如何允许可视化激光划线对体和补充畴结构的影响。特别是,我们研究了取决于激光处理参数(例如激光能量和线距)的样品在磁化过程中的畴形成。在全局磁滞回线测量的背景下,对定向暗场成像结果进行了定量解释。特别是,我们利用暗场图像中的方向灵敏度来区分不同的畴结构取向及其与激光划线过程的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbe6/5133608/464808a90007/srep38307-f1.jpg

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