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am Leben Ich habe bestätigt Höflichkeit fe16n2 magnet Elementar Vor Kilometer

Environment-friendly bulk Fe16N2 permanent magnet: Review and prospective -  ScienceDirect
Environment-friendly bulk Fe16N2 permanent magnet: Review and prospective - ScienceDirect

New possibilities in material design - DTU Mekanik
New possibilities in material design - DTU Mekanik

Core loss in magnetic rings made of Fe16N2-like iron nitride powder -  ScienceDirect
Core loss in magnetic rings made of Fe16N2-like iron nitride powder - ScienceDirect

Temperature-Dependent Magnetic Properties of Bi-Doped Fe16N2: First  Principles and Atomistic Study | Semantic Scholar
Temperature-Dependent Magnetic Properties of Bi-Doped Fe16N2: First Principles and Atomistic Study | Semantic Scholar

Iron-nitrogen compound forms strongest magnet known
Iron-nitrogen compound forms strongest magnet known

Magnetization curves of the α-Fe 16 N 2 aligned sample. The external... |  Download Scientific Diagram
Magnetization curves of the α-Fe 16 N 2 aligned sample. The external... | Download Scientific Diagram

Magnetic characterization of dispersed core–shell α″-Fe16N2 /Al2O3 MNPs...  | Download Scientific Diagram
Magnetic characterization of dispersed core–shell α″-Fe16N2 /Al2O3 MNPs... | Download Scientific Diagram

First-principles study of the complex magnetism in Fe16N2 | Scientific  Reports
First-principles study of the complex magnetism in Fe16N2 | Scientific Reports

Characteristics curves of proposed Fe16N2 PM. | Download Scientific Diagram
Characteristics curves of proposed Fe16N2 PM. | Download Scientific Diagram

Fabrication and Characterization of Fe16N2 Micro‐Flake Powders and Their  Extrusion‐Based 3D Printing into Permanent Magnet Form - Zirhli - 2020 -  Advanced Engineering Materials - Wiley Online Library
Fabrication and Characterization of Fe16N2 Micro‐Flake Powders and Their Extrusion‐Based 3D Printing into Permanent Magnet Form - Zirhli - 2020 - Advanced Engineering Materials - Wiley Online Library

Fabrication and Characterization of Fe16N2 Micro‐Flake Powders and Their  Extrusion‐Based 3D Printing into Permanent Magnet Form - Zirhli - 2020 -  Advanced Engineering Materials - Wiley Online Library
Fabrication and Characterization of Fe16N2 Micro‐Flake Powders and Their Extrusion‐Based 3D Printing into Permanent Magnet Form - Zirhli - 2020 - Advanced Engineering Materials - Wiley Online Library

Recently Published – Functional Materials – TU Darmstadt
Recently Published – Functional Materials – TU Darmstadt

NdFeB magnets: Where is the Next Breakthrough Permanent Magnet Material? -  Bunting-DuBois
NdFeB magnets: Where is the Next Breakthrough Permanent Magnet Material? - Bunting-DuBois

New manufacturing technology to replace rare earths in magnets - AI Online -
New manufacturing technology to replace rare earths in magnets - AI Online -

Synthesis of Fe16N2 compound Free-Standing Foils with 20 MGOe Magnetic  Energy Product by Nitrogen Ion-Implantation | Scientific Reports
Synthesis of Fe16N2 compound Free-Standing Foils with 20 MGOe Magnetic Energy Product by Nitrogen Ion-Implantation | Scientific Reports

Rare-earth-free magnetically hard ferrous materials
Rare-earth-free magnetically hard ferrous materials

NIMP| High energy efficient permanent magnets without rare-earth elements -  NIMP
NIMP| High energy efficient permanent magnets without rare-earth elements - NIMP

Nanomaterials | Free Full-Text | Anisotropic Growth and Magnetic Properties  of α″-Fe16N2@C Nanocones
Nanomaterials | Free Full-Text | Anisotropic Growth and Magnetic Properties of α″-Fe16N2@C Nanocones

40 Years Later No Fe16N2 Magnet – Why? - Magnets - MPCO Magnetics
40 Years Later No Fe16N2 Magnet – Why? - Magnets - MPCO Magnetics

Magnetic properties and potential applications of Fe16N2
Magnetic properties and potential applications of Fe16N2

Bonded Magnets 2016: Current Status and Future Developments
Bonded Magnets 2016: Current Status and Future Developments

Bonded Magnets: A Versatile Class of Permanent Magnets - Magnetics Magazine
Bonded Magnets: A Versatile Class of Permanent Magnets - Magnetics Magazine

Temperature-Dependent Magnetic Properties of Bi-Doped Fe16N2: First  Principles and Atomistic Study | Semantic Scholar
Temperature-Dependent Magnetic Properties of Bi-Doped Fe16N2: First Principles and Atomistic Study | Semantic Scholar

Synthesis of Fe16N2 compound Free-Standing Foils with 20 MGOe Magnetic  Energy Product by Nitrogen Ion-Implantation | Scientific Reports
Synthesis of Fe16N2 compound Free-Standing Foils with 20 MGOe Magnetic Energy Product by Nitrogen Ion-Implantation | Scientific Reports

Crystal structure and magnetic properties of “α′′-Fe16N2” containing  residual α-Fe prepared by low-temperature ammonia nitridation -  ScienceDirect
Crystal structure and magnetic properties of “α′′-Fe16N2” containing residual α-Fe prepared by low-temperature ammonia nitridation - ScienceDirect

Effect of magnetic field strength on the alignment of α′′-Fe16N2  nanoparticle films - Nanoscale (RSC Publishing)
Effect of magnetic field strength on the alignment of α′′-Fe16N2 nanoparticle films - Nanoscale (RSC Publishing)