A comparative study of the effect of melt spinning on the electrochemical properties of the C14 and C15 AB2 alloys has been performed. The wheel speeds of 630, 2100, and 4100 cm/s were applied during the rapid solidification of both alloys. The structural analysis of the formed phases was performed by X-ray powder diffraction (XRD), while their microstructural morphology was studied by scanning electron microscopy (SEM). In both alloys a tremendous grain refinement due to the melt spinning process was observed: In addition, melt spinning also significantly contributed to the morphological variation of the microstructural changes in C14 alloys which showed changes from the equiaxed grain at lower speed to the small dendrites at higher speed....
In the present work, rapidly solidified Ale2Sc-XCNT (X = 0, 0.05) alloys were successfully fabricate...
Chill block melt spinning has been employed to produce rapidly solidified (RS) ribbons of D2 steel (...
AbstractThe RE–Mg–Ni-based A2B7-type La0.75–xZrxMg0.25Ni3.2Co0.2Al0.1 (x = 0, 0.05, 0.1, 0.15, 0.2) ...
A comparative study of the effect of melt spinning on the electrochemical properties of the C14 and ...
International audienceThe main objective of the present work is to study the effect of rapid solidif...
The objective of the present work was to study an interrelation between the conditions of the rapid ...
In this work we have successfully synthesized melt spun Al-Sb alloy and studied the electrochemical ...
Al-20si-5Fe ribbons were produced by melt spinning at the rotating speed of 20 and 40m/s. The micros...
Non-stoichiometric almost single-phase AB55 materials were prepared using the melt-spinning techniqu...
Abstract-- Chill-block melt spinning technique was used to examine the possibility of casting Al-In-...
This doctoral thesis is concerned with rapid solidification of AB5 materials suitable for electroche...
The properties of rapidly solidified hypoeutectic Al-8Si-1Sb alloy, produced by melt-spinning techni...
This paper presents structure investigations of the rapidly cooled Fe66Cu6B19Si5Nb4 alloy. A proper ...
Rapid solidification of metallic melts at a rate ≳ 105°K/sec has gained considerable int...
Applications of magnesium alloys in the aerospace industry are limited because of their poor mechani...
In the present work, rapidly solidified Ale2Sc-XCNT (X = 0, 0.05) alloys were successfully fabricate...
Chill block melt spinning has been employed to produce rapidly solidified (RS) ribbons of D2 steel (...
AbstractThe RE–Mg–Ni-based A2B7-type La0.75–xZrxMg0.25Ni3.2Co0.2Al0.1 (x = 0, 0.05, 0.1, 0.15, 0.2) ...
A comparative study of the effect of melt spinning on the electrochemical properties of the C14 and ...
International audienceThe main objective of the present work is to study the effect of rapid solidif...
The objective of the present work was to study an interrelation between the conditions of the rapid ...
In this work we have successfully synthesized melt spun Al-Sb alloy and studied the electrochemical ...
Al-20si-5Fe ribbons were produced by melt spinning at the rotating speed of 20 and 40m/s. The micros...
Non-stoichiometric almost single-phase AB55 materials were prepared using the melt-spinning techniqu...
Abstract-- Chill-block melt spinning technique was used to examine the possibility of casting Al-In-...
This doctoral thesis is concerned with rapid solidification of AB5 materials suitable for electroche...
The properties of rapidly solidified hypoeutectic Al-8Si-1Sb alloy, produced by melt-spinning techni...
This paper presents structure investigations of the rapidly cooled Fe66Cu6B19Si5Nb4 alloy. A proper ...
Rapid solidification of metallic melts at a rate ≳ 105°K/sec has gained considerable int...
Applications of magnesium alloys in the aerospace industry are limited because of their poor mechani...
In the present work, rapidly solidified Ale2Sc-XCNT (X = 0, 0.05) alloys were successfully fabricate...
Chill block melt spinning has been employed to produce rapidly solidified (RS) ribbons of D2 steel (...
AbstractThe RE–Mg–Ni-based A2B7-type La0.75–xZrxMg0.25Ni3.2Co0.2Al0.1 (x = 0, 0.05, 0.1, 0.15, 0.2) ...