Lorentz Microscopy Observations of a Nanocrystalline Fe 44 Co 44 Zr 7 B 4 Cu 1 Alloy
نویسندگان
چکیده
Domain imaging of soft magnetic materials by transmission electron microscopy (TEM) is difficult due to the potentially saturating field of the microscope’s objective lens. Energy filtered Lorentz microscopy provides a low field, high resolution domain imaging solution for soft magnetic materials. This technique was successfully applied to a soft magnetic nanocrystalline alloy to examine the domain configurations in a thin foil sample. A sample with composition Fe44Co44Zr7B4Cu1 annealed at 650 C for one hour was examined. Both Foucault and Fresnel methods were used to develop a clear picture of the relationship between the microstructure and domain structure of this alloy. Magnetic domain maps were created showing some regions of the sample with irregularly shaped domains, which are characteristic of amorphous alloys. Other regions contained relatively large grains with the magnetization in a circular in-plane configuration (presumably due to shape anisotropy).
منابع مشابه
In-situ investigation of phase formation in nanocrystalline (Co97.5Fe2.5)89Zr7B4 alloy by high temperature x-ray diffraction
In-situ investigation of phase formation in nanocrystalline (Co97.5Fe2.5)89Zr7B4 alloy by high temperature x-ray diffraction Crystallization and phase evolution in an (Co 97.5 Fe 2.5) 89 Zr 7 B 4 amorphous alloy was studied by high temperature x-ray diffraction (HTXRD) and transmission electron microscopy (TEM). Co-based nano-composite alloys have zero magnetostriction and a strong response to ...
متن کاملAtom Probe Studies of Nanocrystallization of Amorphous Alloys
The nanocrystallization processes in Fe-Si-B-Nb-Cu and Fe-Nd-B(-Cu-Nb) amorphous alloys have been studied by transmission electron microscopy (TEM) and a three dimensional atom probe (3DAP). Cu additions are effective in refining the nanocrystalline microstructures of an Fe74.5Si13.5B8Nb3Cu1 alloy and an Fe3B/Nd2Fe14B nanocomposite microstructure. This is because Cu atoms form a high density of...
متن کاملProduction of Nanocrystalline (Fe, Co)-Si-B-P-Cu Alloy with Excellent Soft Magnetic Properties for Commercial Applications
With the aim of applying to a magnetic core material, the effect of ribbon thickness on the magnetic properties of a (Fe, Co)-Si-B-P-Cu alloy ribbon was investigated. It is found that the Si addition in (Fe, Co)-Si-B-P-Cu nanocrystalline alloy increased the saturation magnetic flux density (Bs), but degraded the coercivity (Hc), suggesting that the Si addition should be suppressed to a little a...
متن کاملEffect of Fe, Cu, Zr, and Ti on the Magnetic Properties of SmCo-1 : 7 Magnets - Magnetics, IEEE Transactions on
The effect of Fe, Cu, Zr, and Ti substitution on magnetic properties of SmCo 1 : 7 magnets at temperatures up to 500 C were studied. As-milled amorphous Sm(Co,Fe,Cu,Ti–Zr)7 magnets crystallized in the TbCu7-type structure after annealing at 750 C for 2 h. A room-temperature intrinsic coercivity of around 2.5 T is obtained for compositions SmCo6 4Zr0 2Ti0 4 and SmCo6 4Fe0 1Zr0 1Ti0 4. The high c...
متن کاملThe microstructure and magnetic properties of nano-scale Fe magnetic particles precipitated in a Cu–Fe alloy
The evolution of nano-scale Fe particles precipitated in a Cu–Fe alloy has been examined from the viewpoint of the relationship between the microstructure and magnetic properties, using conventional, high-resolution and Lorentz electron microscopy, and magnetic measurements. It has been revealed that spherical Fe particles have a tendency to align along the <001> direction in a Cu matrix at the...
متن کامل