상세 보기
Additive manufacturing of Fe-6.5Si cores with metal-insulator-metal structure via dual-nozzle material extrusion (MEX) technology
- Im, Taehyeob;
- Kim, Suyeon;
- Kim, Juyong;
- Kim, Minjong;
- Ahn, Jonghyeok;
- ... 김종렬;
- ... Lee, Caroline Sunyong;
- 외 3명
WEB OF SCIENCE
7SCOPUS
7초록
This study proposes a novel approach for fabricating Fe-6.5 wt. %Si (Fe-6.5Si) soft magnetic cores using a dual-nozzle material extrusion (MEX) three-dimensional (3D) printing technology followed by a spark plasma sintering (SPS) process. A SiO2 insulator was printed between the Fe-6.5Si layers to fabricate metal-insulator-metal (MIM)-structured cores. Densified Fe-6.5Si soft magnetic cores (over 99%) were obtained owing to the resolution of the sintering problem with Fe-6.5Si because of its brittle nature using SPS. The magnetic core with a 0.2 mm-printed insulator (MC0.2) achieved a uniform insulator thickness of approximately 85 mu m. Despite MC0.2 being approximately three times thicker than the single Fe-6.5Si layer (magnetic core single layer, MCS), a SiO2 insulator used in the cores of MC0.2 and MCS, resulted in comparable eddy current losses at 1 kHz. This highlighted the effectiveness of the MIM structure in suppressing the eddy currents. Thus, the proposed approach offers a promising solution for overcoming the geometric limitations of traditional stamping processes and paves the way for advanced magnetic core applications in additive manufacturing.
키워드
- 제목
- Additive manufacturing of Fe-6.5Si cores with metal-insulator-metal structure via dual-nozzle material extrusion (MEX) technology
- 저자
- Im, Taehyeob; Kim, Suyeon; Kim, Juyong; Kim, Minjong; Ahn, Jonghyeok; Lee, Kwiyoung; Lee, Dongju; Lee, Jai-Sung; 김종렬; Lee, Caroline Sunyong
- 발행일
- 2025-12
- 유형
- Article
- 권
- 20
- 호
- 1