Research on Deterioration Mechanism and High-Precision Modelling of the Core Loss for Amorphous Alloys after Wire-Cut Electric Discharge Machining
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Published:2023-03-12
Issue:6
Volume:16
Page:2275
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ISSN:1996-1944
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Container-title:Materials
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language:en
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Short-container-title:Materials
Author:
Yang Xinyu123ORCID, Qiu Shuheng3ORCID, Wang Yuheng4ORCID, Zhao Pengfei123, Gao Yunpeng3, Wang Haifeng12, Zhang Chi3ORCID
Affiliation:
1. School of Rare Earths, University of Science and Technology of China, Hefei 230026, China 2. Ganjiang Innovation Academy, Chinese Academy of Sciences, Ganzhou 341119, China 3. Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China 4. Faculty of Electrical Engineering and Computer Science, Ningbo University, Ningbo 315211, China
Abstract
Amorphous alloys (AAs) have the advantage of low core loss. Thus, they can be used in high-speed motor applications. However, compared with the nominal performances, the performance of the wire-cut electric discharge machine (W-EDM)-processed AA iron core changes significantly, which limits its popularization. This paper focuses on the performance degradation mechanism of the AA ribbon caused by W-EDM and establishes a modified core loss model after machining. First, a 308 × 15 mm ribbon-shaped AA sample machined by W-EDM was prepared. The characterization and analysis of the magnetic properties, phase, magnetic domain, nano-indentation, micro-morphology, and composition were carried out. In this paper, by analysing the variation in the magnetic domain distribution based on domain width and nano-mechanical properties, it is proposed that the performance degradation range of AA ribbons processed by W-EDM is within 1 mm from the edge. By comparing the microscopic morphology and chemical composition changes in the affected and the unaffected area, this paper presents a mechanism for the property deterioration of W-EDM-processed AA ribbons based on electrochemical corrosion. Finally, a modified loss model for W-EDM-processed AAs is established based on the division of the affected area. This model can significantly improve the accuracy of core loss estimation in the medium- and high-frequency bands commonly used in high-speed motors.
Funder
The National Key R&D Program of China
Subject
General Materials Science
Reference34 articles.
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