Microstructure and properties of laser interference crystallized amorphous FeSiB ribbon
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Jan Kusinski
, Olaf Czyz , Agnieszka Radziszewska , Jerzy Morgiel , Czeslaw Kapusta , Roman Ostrowski , Marek Strzelec and Krzysztof Czyz
Abstract
The influence of Q-switched pulsed Nd:YAG laser interference heating, using 120 mJ of pulse energy and a variable number of consecutive pulses, on the microstructure and magnetic properties of amorphous Fe80Si11B9 alloy was examined. Microstructural analysis, using light, scanning and transmission electron microscopy, was complemented by results of Mössbauer spectroscopy and measurement of magnetic properties (vibrating sample magnetometer). Periodically distributed crystallized micro-areas, ∼10 μm in diameter, in an amorphous matrix were produced by the treatments. Magnetization measurements showed that the as-cast ribbon and laser light irradiated samples are magnetically soft materials. The results lead to the conclusion that the dots corresponding to the laser modified regions exhibit a perpendicular magnetic anisotropy.
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Articles in the same Issue
- Contents
- Contents
- Editorial
- XVI International Conference on Electron Microscopy
- Original Contributions
- Application of analytical electron microscopy and FIB-SEM tomographic technique for phase analysis in as-cast Allvac 718Plus superalloy
- Microstructure and properties of laser interference crystallized amorphous FeSiB ribbon
- Analysis of amorphous regions in severely marformed NiTi shape memory alloy
- Structure of MgLiAl alloys after various routes of severe plastic deformation studied by TEM
- Microstructure and selected mechanical and electrical property analysis of Sr-doped LaCoO3 perovskite thin films deposited by the PLD technique
- Microstructure of an oxide scale formed on ATI 718Plus superalloy during oxidation at 850 °C characterised using analytical electron microscopy
- Effect of powder morphology on the microstructure and properties of cold sprayed Ni coatings
- Microstructure of Ti/Al multilayer foils ignited with electric current
- Evolution of γ′ morphology and γ/γ′ lattice parameter misfit in a nickel-based superalloy during non-equilibrium cooling
- Effect of heat treatment on the precipitation hardening in FeNiCoAlTaB shape memory alloys
- The structure and formation mechanism of FeS2/Fe3S4/S8 nanocomposite synthesized using spherical shaped Fe3O4 nanoparticles as the precursor
- Short Communications
- Characterization of Inconel 625 surface layer modified by laser shock processing
- DGM News
- DGM News
Articles in the same Issue
- Contents
- Contents
- Editorial
- XVI International Conference on Electron Microscopy
- Original Contributions
- Application of analytical electron microscopy and FIB-SEM tomographic technique for phase analysis in as-cast Allvac 718Plus superalloy
- Microstructure and properties of laser interference crystallized amorphous FeSiB ribbon
- Analysis of amorphous regions in severely marformed NiTi shape memory alloy
- Structure of MgLiAl alloys after various routes of severe plastic deformation studied by TEM
- Microstructure and selected mechanical and electrical property analysis of Sr-doped LaCoO3 perovskite thin films deposited by the PLD technique
- Microstructure of an oxide scale formed on ATI 718Plus superalloy during oxidation at 850 °C characterised using analytical electron microscopy
- Effect of powder morphology on the microstructure and properties of cold sprayed Ni coatings
- Microstructure of Ti/Al multilayer foils ignited with electric current
- Evolution of γ′ morphology and γ/γ′ lattice parameter misfit in a nickel-based superalloy during non-equilibrium cooling
- Effect of heat treatment on the precipitation hardening in FeNiCoAlTaB shape memory alloys
- The structure and formation mechanism of FeS2/Fe3S4/S8 nanocomposite synthesized using spherical shaped Fe3O4 nanoparticles as the precursor
- Short Communications
- Characterization of Inconel 625 surface layer modified by laser shock processing
- DGM News
- DGM News