For the first time, a high-density amorphous and crack-free bulk metallic glass (BMG) based on a precious metal (PdCuNiP) was produced via additive manufacturing (AM). Laser powder-bed fusion (LPBF) was used for the fabrication of the samples, and led to a density of 99.6%. Excellent mechanical properties such as high hardness and compressive strength were achieved, overcoming the limitations usually found for precious metals in jewelry and watchmaking. Furthermore, without any post-processing, a mirror-like smooth and brilliant surface was directly obtained, which is highly beneficial for applications where surface finish or aesthetics matters. The effect of the main processing parameters, such as laser power and laser-scanning speed, on t...
The production of a wide range of metallic Glass Forming Alloys (GFA) has been investigated by sever...
Laser powder bed fusion (PBF-LB/M) of bulk metallic glasses (BMGs) has experienced growing scientifi...
The processing power of high power Nd:YAG laser has been utilised to achieve the inherently high coo...
Bulk metallic glasses (BMGs) are high-strength, highly elastic materials due to their disordered ato...
Bulk Metallic Glasses (BMG) are metallic alloys that have the ability to solidify in an amorphous st...
Laser powder-bed fusion (LPBF) is an additive manufacturing (AM) process that uses a laser to select...
The application of bulk metallic glasses (BMGs) has been traditionally limited to parts with small ...
Additive manufacturing of Zr-based bulk metallic glasses (BMGs) is subject to growing scientific and...
Additive manufacturing of bulk metallic glasses (BMGs) through laser powder bed fusion (LPBF) has dr...
Additive manufacturing of bulk metallic glasses (BMGs) has opened this material class to an exciting...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...
PING 2019 is organized with the support of funds for specific university research project SVK1-2019-...
The required rapid cooling has limited the dimension of the Bulk Metallic glasses (BMGs) produced by...
Additive manufacturing in the form of laser deposition is a unique way to manufacture near net shape...
Powder bed fusion (PBF) processing parameters are developed for a FeCrMoBC glass‐forming alloy. Alth...
The production of a wide range of metallic Glass Forming Alloys (GFA) has been investigated by sever...
Laser powder bed fusion (PBF-LB/M) of bulk metallic glasses (BMGs) has experienced growing scientifi...
The processing power of high power Nd:YAG laser has been utilised to achieve the inherently high coo...
Bulk metallic glasses (BMGs) are high-strength, highly elastic materials due to their disordered ato...
Bulk Metallic Glasses (BMG) are metallic alloys that have the ability to solidify in an amorphous st...
Laser powder-bed fusion (LPBF) is an additive manufacturing (AM) process that uses a laser to select...
The application of bulk metallic glasses (BMGs) has been traditionally limited to parts with small ...
Additive manufacturing of Zr-based bulk metallic glasses (BMGs) is subject to growing scientific and...
Additive manufacturing of bulk metallic glasses (BMGs) through laser powder bed fusion (LPBF) has dr...
Additive manufacturing of bulk metallic glasses (BMGs) has opened this material class to an exciting...
The emergence of bulk metallic glasses and their identification as versatile advanced engineering ma...
PING 2019 is organized with the support of funds for specific university research project SVK1-2019-...
The required rapid cooling has limited the dimension of the Bulk Metallic glasses (BMGs) produced by...
Additive manufacturing in the form of laser deposition is a unique way to manufacture near net shape...
Powder bed fusion (PBF) processing parameters are developed for a FeCrMoBC glass‐forming alloy. Alth...
The production of a wide range of metallic Glass Forming Alloys (GFA) has been investigated by sever...
Laser powder bed fusion (PBF-LB/M) of bulk metallic glasses (BMGs) has experienced growing scientifi...
The processing power of high power Nd:YAG laser has been utilised to achieve the inherently high coo...