The paper presents the results of tests carried out on samples of FeCoB-based alloys. The samples were produced by a technique involving the injection of each liquid alloy into a copper water-cooled mould. The investigated materials are characterised by much better properties than their crystalline counterparts with the same chemical composition. It has been shown that the cooling rate has a significant impact on the magnetic properties of the produced alloy. Alteration of the production parameters of FeCoB alloys has a decisive influence on the resulting properties of these alloys. The research has revealed evidence that changes in the structural characteristics are related directly to changes in the magnetic properties
Fe75Nb10B15 amorphous ribbons were grinded via ball milling to produce powder samples pr...
This thesis deals with the production, characterization and analysis of Fe and Co based nanocrystall...
The paper refers to magnetic properties of the (Fe80Nb6B14)1−xTbx (x = 0.06 and x = 0.08) bulk nanoc...
The paper refers to magnetic properties of the (Fe80Nb6B14)1xTbx (x = 0:06 and x = 0:08) bulk nanocr...
In the presented work we are focused on the influence of cooling rate on structural and magnetic pro...
Purpose: The idea of the paper is to study the influence of different alloying additions (Cu, Zr, Nb...
This paper presents the results of research on the magnetic saturation polarisation, as a function o...
Rapid solidification techniques allow the manufacture of nanocrystalline alloys using a single-stage...
FeNbCuSiB based materials were produced in the form of ribbons by rapid solidification techniques. T...
In this work, the structural and magnetic properties of rapidly-cooled alloys Fe60Co10Y5+xZr5-xB20 w...
As the title implies the article describes effect of heat treatment on magnetic and mechanic propert...
The magnetisation process of amorphous materials is similar to that of crystalline materials and con...
In the present work, Hf2Co9.5Fe1.5B melt-spun (MS) alloy is synthesized by employing melt spinning a...
This paper features investigations into the influence of small additions of alloying elements on: st...
Properties of amorphous alloys differ from each other when they are produced at different cooling ra...
Fe75Nb10B15 amorphous ribbons were grinded via ball milling to produce powder samples pr...
This thesis deals with the production, characterization and analysis of Fe and Co based nanocrystall...
The paper refers to magnetic properties of the (Fe80Nb6B14)1−xTbx (x = 0.06 and x = 0.08) bulk nanoc...
The paper refers to magnetic properties of the (Fe80Nb6B14)1xTbx (x = 0:06 and x = 0:08) bulk nanocr...
In the presented work we are focused on the influence of cooling rate on structural and magnetic pro...
Purpose: The idea of the paper is to study the influence of different alloying additions (Cu, Zr, Nb...
This paper presents the results of research on the magnetic saturation polarisation, as a function o...
Rapid solidification techniques allow the manufacture of nanocrystalline alloys using a single-stage...
FeNbCuSiB based materials were produced in the form of ribbons by rapid solidification techniques. T...
In this work, the structural and magnetic properties of rapidly-cooled alloys Fe60Co10Y5+xZr5-xB20 w...
As the title implies the article describes effect of heat treatment on magnetic and mechanic propert...
The magnetisation process of amorphous materials is similar to that of crystalline materials and con...
In the present work, Hf2Co9.5Fe1.5B melt-spun (MS) alloy is synthesized by employing melt spinning a...
This paper features investigations into the influence of small additions of alloying elements on: st...
Properties of amorphous alloys differ from each other when they are produced at different cooling ra...
Fe75Nb10B15 amorphous ribbons were grinded via ball milling to produce powder samples pr...
This thesis deals with the production, characterization and analysis of Fe and Co based nanocrystall...
The paper refers to magnetic properties of the (Fe80Nb6B14)1−xTbx (x = 0.06 and x = 0.08) bulk nanoc...