Effective thermal conductivities (ETCs) of five commonly used metal powders in additive manufacturing have been measured at temperatures up to 750 °C. The ETCs of Al-Mn-Sc and Ti-6Al-4V powders with different particle sizes are also investigated. When the temperature is lower than 300 °C, the ETC of metal powders is insensitive to the temperature and material. In contrast, when the temperature exceeds 400 °C, it increases significantly with increasing temperature and changes markedly dependent on the material. Additionally, in the lower temperature range, the larger size powders have higher ETCs, which is more pronounced for Al-Mn-Sc due to its higher thermal conductivity. In the higher temperature range, the larger Al-Mn-Sc powder shows hi...
Ti6Al4V metal powder has been widely utilized in direct energy deposition (DED) of additive manufact...
A comparison between the properties achievable by processing the Ti&-6Al&-4V alloys by means of two ...
This work investigates the thermal conductivity of parts which have been additively manufactured usi...
Additive manufacturing (AM) is a manufacturing technique that adds material, such as polymers, ceram...
Metallic powder bed additive manufacturing is capable of producing complex, functional parts by repe...
This study investigates the thermal conductivity of metallic powder in laser powder-bed fusion (LPB...
Throughout this project, the design of an experimental setup for calculating the thermal diffusivit...
The effective thermal diffusivity of metal powders in air at room temperature is measured by the pho...
Additive manufacturing of polymer powders is nowadays an industrial production technology. Complex t...
Laser and electron beam powder bed melting additive technologies are being rapidly adapted by indust...
Thermal properties of additive manufacturing (AM) solids and precursor materials are important fact...
Metallic powders are used as raw materials in the Selective Laser Melting (SLM) process. These meta...
This Independent Project reviews literature about the effect of pressure and temperature on thermal c...
Thermal management has become a ‘hot’ field in recent years due to a need to obtain high performance...
AbstractNanometer-sized particles possess characteristic physical and chemical properties different ...
Ti6Al4V metal powder has been widely utilized in direct energy deposition (DED) of additive manufact...
A comparison between the properties achievable by processing the Ti&-6Al&-4V alloys by means of two ...
This work investigates the thermal conductivity of parts which have been additively manufactured usi...
Additive manufacturing (AM) is a manufacturing technique that adds material, such as polymers, ceram...
Metallic powder bed additive manufacturing is capable of producing complex, functional parts by repe...
This study investigates the thermal conductivity of metallic powder in laser powder-bed fusion (LPB...
Throughout this project, the design of an experimental setup for calculating the thermal diffusivit...
The effective thermal diffusivity of metal powders in air at room temperature is measured by the pho...
Additive manufacturing of polymer powders is nowadays an industrial production technology. Complex t...
Laser and electron beam powder bed melting additive technologies are being rapidly adapted by indust...
Thermal properties of additive manufacturing (AM) solids and precursor materials are important fact...
Metallic powders are used as raw materials in the Selective Laser Melting (SLM) process. These meta...
This Independent Project reviews literature about the effect of pressure and temperature on thermal c...
Thermal management has become a ‘hot’ field in recent years due to a need to obtain high performance...
AbstractNanometer-sized particles possess characteristic physical and chemical properties different ...
Ti6Al4V metal powder has been widely utilized in direct energy deposition (DED) of additive manufact...
A comparison between the properties achievable by processing the Ti&-6Al&-4V alloys by means of two ...
This work investigates the thermal conductivity of parts which have been additively manufactured usi...