Molten salt electroreduction process provides a simple approach for the facile production of alloys and composites. In this work, the solid oxide membrane (SOM)-assisted molten salt electroreduction process has been used to produce titanium alloys/composites directly from complex titanium compounds ores. The Ti-bearing blast-furnace slag, high titanium slag and natural ilmenite were used as raw materials. The SOM-assisted electroreduction process was carried out in molten calcium chloride (CaCl2) at 950–1000℃ and 3.8 V. The reaction mechanisms of the electroreduction process including the compounding process, the electroreduction process and the impurity-removal process were discussed. The results indicate that Ti5Si3, Ti5Si3/TiC, Ti5Si3/Ti...
Titanium silicide (Ti5Si3) has been extracted directly from complex Ti-bearing compounds by electrod...
Starting ore (ilmenite, TiFeO3) was wet-chemically treated to remove Fe and the hydroxide of titaniu...
Ti5Si3/TiC composites have been electrosynthesized directly in molten CaCl2 electrolyte from pressed...
Molten salt electroreduction process provides a simple approach for the facile production of alloys ...
Using process of solid oxygen-ion conducting membrane (SOM), titanium metal and its alloy can be pre...
Ti5Si3, Ti5Si3/TiC, and Ti5Si3/Ti3SiC2 have been electrochemically synthesized from the Ti-bearing b...
Ti5Si3, Ti5Si3/TiC, and Ti5Si3/Ti3SiC2 have been electrochemically synthesized from the Ti-bearing b...
The direct electrochemical extraction of Ti-Fe alloys from natural ilmenite (FeTiO3) in molten CaCl2...
<p>Titanium production is a long and complicated process. What we often consider to be the standard ...
The direct electrochemical extraction of Ti-Fe alloys from natural ilmenite (FeTiO3) in molten CaCl2...
Molten salt electrolysis using CaCl2 is employed to produce pure Ti and its alloys directly from TiO...
The solid oxide membrane (SOM) method is an emerging technology for the environmentally friendly and...
Titanium production is a long and complicated process. What we often consider to be the standard met...
The solid oxide membrane (SOM) method is an emerging technology for the environmentally friendly and...
Titanium silicide (Ti5Si3) has been extracted directly from complex Ti-bearing compounds by electrod...
Titanium silicide (Ti5Si3) has been extracted directly from complex Ti-bearing compounds by electrod...
Starting ore (ilmenite, TiFeO3) was wet-chemically treated to remove Fe and the hydroxide of titaniu...
Ti5Si3/TiC composites have been electrosynthesized directly in molten CaCl2 electrolyte from pressed...
Molten salt electroreduction process provides a simple approach for the facile production of alloys ...
Using process of solid oxygen-ion conducting membrane (SOM), titanium metal and its alloy can be pre...
Ti5Si3, Ti5Si3/TiC, and Ti5Si3/Ti3SiC2 have been electrochemically synthesized from the Ti-bearing b...
Ti5Si3, Ti5Si3/TiC, and Ti5Si3/Ti3SiC2 have been electrochemically synthesized from the Ti-bearing b...
The direct electrochemical extraction of Ti-Fe alloys from natural ilmenite (FeTiO3) in molten CaCl2...
<p>Titanium production is a long and complicated process. What we often consider to be the standard ...
The direct electrochemical extraction of Ti-Fe alloys from natural ilmenite (FeTiO3) in molten CaCl2...
Molten salt electrolysis using CaCl2 is employed to produce pure Ti and its alloys directly from TiO...
The solid oxide membrane (SOM) method is an emerging technology for the environmentally friendly and...
Titanium production is a long and complicated process. What we often consider to be the standard met...
The solid oxide membrane (SOM) method is an emerging technology for the environmentally friendly and...
Titanium silicide (Ti5Si3) has been extracted directly from complex Ti-bearing compounds by electrod...
Titanium silicide (Ti5Si3) has been extracted directly from complex Ti-bearing compounds by electrod...
Starting ore (ilmenite, TiFeO3) was wet-chemically treated to remove Fe and the hydroxide of titaniu...
Ti5Si3/TiC composites have been electrosynthesized directly in molten CaCl2 electrolyte from pressed...