Bulk Metallic Glasses (BMG) are metallic alloys that have the ability to solidify in an amorphous state. BMGs show enhanced properties, for instance, high hardness, strength, and excellent corrosion and wear resistance. BMGs produced by conventional methods are limited in size due to the high cooling rates required to avoid crystallization and the associated detrimental mechanical properties. Additive manufacturing (AM) techniques are a potential solution to this problem as the interaction between the heat source, e.g., laser, and the feedstock, e.g., powder, is short and confined to a small volume. However, producing amorphous parts with AM techniques with mechanical properties comparable to as-cast samples remains a challenge for most BMG...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...
For the first time, a high-density amorphous and crack-free bulk metallic glass (BMG) based on a pre...
Additive manufacturing of Zr-based bulk metallic glasses (BMGs) is subject to growing scientific and...
The application of bulk metallic glasses (BMGs) has been traditionally limited to parts with small ...
Bulk metallic glasses have emerged as competitive engineering material and have captured the attenti...
Arising from their unique amorphous microstructure, the excellent physical and functional properties...
The application of bulk metallic glasses (BMGs) has been traditionally limited to parts with small ...
The application of bulk metallic glasses (BMGs) has been traditionally limited to parts with small d...
Bulk metallic glasses (BMGs) and their composites (BMGMC) have emerged as competitive materials for ...
Bulk metallic glasses (BMGs) are high-strength, highly elastic materials due to their disordered ato...
Bulk metallic glasses (BMGs) are high-strength, highly elastic materials due to their disordered ato...
Bulk metallic glasses (BMGs) are high-strength, highly elastic materials due to their disordered ato...
The application of bulk metallic glasses (BMGs) has been traditionally limited to parts with small d...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...
For the first time, a high-density amorphous and crack-free bulk metallic glass (BMG) based on a pre...
Additive manufacturing of Zr-based bulk metallic glasses (BMGs) is subject to growing scientific and...
The application of bulk metallic glasses (BMGs) has been traditionally limited to parts with small ...
Bulk metallic glasses have emerged as competitive engineering material and have captured the attenti...
Arising from their unique amorphous microstructure, the excellent physical and functional properties...
The application of bulk metallic glasses (BMGs) has been traditionally limited to parts with small ...
The application of bulk metallic glasses (BMGs) has been traditionally limited to parts with small d...
Bulk metallic glasses (BMGs) and their composites (BMGMC) have emerged as competitive materials for ...
Bulk metallic glasses (BMGs) are high-strength, highly elastic materials due to their disordered ato...
Bulk metallic glasses (BMGs) are high-strength, highly elastic materials due to their disordered ato...
Bulk metallic glasses (BMGs) are high-strength, highly elastic materials due to their disordered ato...
The application of bulk metallic glasses (BMGs) has been traditionally limited to parts with small d...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...