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1. The GMI effect of Fe-based microwires with a partially crystallized near-surface layer NSTL国家科技图书文献中心

Fuks, A. A. |  Aksenov, O. I.... -  《Journal of Magnetism and Magnetic Materials》 - 2025,614 - 共5页

摘要:The GMI effect was investigated in microwires |  based on a Fe70Si18B9Cu1Nb2 alloy (rho = d/D = 0.5, d |  = 15 mu m) after heat treatment at 550 degrees C |  resulting in the formation of a non-uniform |  nanocrystalline structure. It was shown experimentally that
关键词: Microwires |  GMI |  Finemet |  Near-surface |  Partially crystallized |  Nanocrystals

2. Effect of co-addition of Nb/Zr on the microstructure and soft magnetic properties of Fe 77.5 Si 11.5 B 7 NbxZr 3-x Cu 1 nanocrystalline alloys NSTL国家科技图书文献中心

Im, Hyun Ah |  An, Subong... -  《Journal of Alloys and Compounds》 - 2025,1010 - 177636~ - 共10页

摘要:, exemplified by FINEMET (Fe73.5Si13.5B9Nb3Cu1), are essential |  (1.23 T) of FINEMET alloy, which is attributed to its |  introduces a new alloy system that builds on FINEMET by | Soft magnetic nanocrystalline alloys |  in electronics due to their low coercivity and high
关键词: Soft magnetic nanocrystals |  Magnetic Properties |  Melt spinning |  Nanocrystallization |  Grain refinement |  TEM analysis |  Power conversion devices

3. A Finemet-based microfluidic single-coil microsensor for monitoring oil condition NSTL国家科技图书文献中心

Ilerioluwa, Lebile |  Zhang, Hongpeng... -  《Tribology International》 - 2024,199 - 109975~ - 共12页

摘要: particles. Moreover, Finemet (Fe73.5Si13.5B9Nb3Cu1) was |  Finemet boosts the sensitivity of the sensors in both |  findings, indicating the significance of Finemet for the | Wear is an unavoidable phenomenon that |  generates debris particles. i.e., ferromagnetic and non
关键词: Inductance sensor |  Resistance sensor |  Finemet |  Particle detection |  SENSOR |  CONTAMINATION |  MECHANISM

4. 磁気異方性を誘導したCo-Pd置換FINEMET組成薄帯の磁気特性評価 NSTL国家科技图书文献中心

橋本 竜大 |  寺西 英治... -  《電気学会研究会資料 マグネティックス研究会》 -  マグネティックス研究会 - 2024, - 25~29 - 共5页

摘要:FINEMET組成を出発にCo-Pd置換FINEMET組成薄帯の作製と特性評価について述べた | .以下に得られた結果を要約して示す.(1)FIMEMET組成にCo-Pdを置換し磁界中ナノ結晶処理した | 場合磁界印加方向に異方性が誘導されることが磁区観察の結果から明らかとなった.
关键词: 磁性材料 |  薄帯 |  FINEMET |  磁気異方性 |  磁区 |  透磁率

5. Laser powder bed fusion of a nanocrystalline Finemet Fe-based alloy for soft magnetic applications NSTL国家科技图书文献中心

S. Sadanand |  M. Rodriguez-Sanchez... -  《Journal of laser applications》 - 2024,36(4) - 42029.1~42029.11 - 共11页

摘要: nanocrystalline soft magnetic Finemet alloy. With that purpose | The aim of this work is to explore the laser |  powder bed fusion (LPBF) processability window of the | , several laser power and scan speed values and a meander |  scanning strategy were probed to process simple geometry
关键词: nanocrystalline soft magnet |  Finemet |  laser powder bed fusion |  Fe-based alloy

6. Finemet nanocrystalline magnetic powder cores: Application of binder and warm compaction process NSTL国家科技图书文献中心

Wang P. |  Zhu Z.... -  《Journal of Magnetism and Magnetic Materials》 - 2024,596 - 共5页

摘要:© 2024 Elsevier B.V.In this paper, Finemet |  density of Finemet magnetic powder cores prepared by |  flake amorphous powder with poor flowability is used |  as raw material to investigate the effect of the |  type of silicone resin and compaction method on the
关键词: Nanocrystalline |  Soft magnetic powder cores |  Soft magnetic properties |  Warm compaction

7. Orientation dependence of the nanocrystallization and magnetic behavior during annealing of the FINEMET alloy NSTL国家科技图书文献中心

Fan, Xiaozhen |  Wang, Zhuo... -  《Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites》 - 2024,625 - ARTN 122736~ - 共7页

摘要:The microscopic strain evolution and |  microstructural of FeCuNbSiB amorphous alloy samples were |  studied under both free and tensile stress annealing |  conditions using in-situ synchrotron X-ray diffraction (XRD | ) and trans-mission electron microscopy (TEM). An
关键词: Finemet alloy |  Microscopic strain |  Synchrotron XRD |  Magnetization |  Annealing |  AMORPHOUS-ALLOYS |  ANISOTROPY |  STRESS |  FE73.5CU1NB3SI13.5B9 |  EMBRITTLEMENT...

8. The study on the magnetic interaction between the duel magnetic layers and the FINEMET ribbon NSTL国家科技图书文献中心

Liu, J. |  Li, M. Q.... -  《Physica, B. Condensed Matter》 - 2024,691 - ARTN 416331~ - 共6页

摘要: interaction. In this work, FINEMET/Fe20Ni80/SiO2/Fe20Ni80 20 | Due to the sensitive magnetic field response |  of the GMI effect, the peak field in magneto |  impedance curves obtained from the composite magnetic |  ribbons shows great dependence on the magnetic
关键词: Giant magneto impedance (GMI) |  Four peaks |  Exchange couple |  Dipole interaction |  GIANT MAGNETOIMPEDANCE |  IMPEDANCE |  MICROSTRUCTURE |  MODEL

9. Effects of Non-field Annealing and Magnetic Field Annealing on the Soft Magnetic Properties of Ni-Doped FINEMET Cores NSTL国家科技图书文献中心

Yang, Xue |  Wang, Chunhui... -  《JOM》 - 2024,76(9) - 4938~4950 - 共13页

摘要: the Finemet. After changing the Ni content to | Adding trace Ni elements and annealing in a |  magnetic field improves the soft magnetic properties of |  control the composition of the alloy system and change |  the pitch of stripes of the magnetic domains
关键词: AMORPHOUS-ALLOYS |  CRYSTALLIZATION BEHAVIOR |  NANO-CRYSTALLIZATION |  THERMAL-STABILITY |  FE |  ANTICORROSION |  IMPROVEMENT |  ANISOTROPY |  EVOLUTION |  RIBBON

10. Effect of cryogenic thermal cycling treatment on the mechanical properties of FINEMET amorphous nanocrystalline alloy NSTL国家科技图书文献中心

Yiran Zhang |  Jing Pang... -  《Materials Science & Engineering,A.Structural Materials: Properties, Misrostructure and Processing》 - 2024,916(Nov.) - 147369.1~147369.10 - 共10页

摘要:The brittleness of FINEMENT amorphous |  nanocrystalline alloys caused by annealing is an urgent problem |  to be solved because it limits the scope of their |  engineering application. We are herein to investigate the |  rejuvenation behavior of the as-annealed samples that not
关键词: Fe-based amorphous nanocrystalline alloy |  Cryogenic thermal cycling treatment |  Rejuvenation |  Molecular dynamics simulation
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