In this study, the flow characteristics and behaviors of virgin and recycled Inconel powder for powder-bed additive manufacturing (AM) were studied using different powder characterization techniques. The results revealed that the particle size distribution (PSD) for the selective laser melting (SLM) process is typically in the range from 15 μm to 63 μm. The flow rate of virgin Inconel powder is around 28 s·(50 g)−1. In addition, the packing density was found to be 60%. The rheological test results indicate that the virgin powder has reasonably good flowability compared with the recycled powder. The inter-relation between the powder characteristics is discussed herein. A propeller was successfully printed using the powder. The results sugges...
Interest in additive manufacturing (AM) has grown exponentially in recent decades and is now being u...
Direct metal laser sintering (DMLS) is an additive manufacturing (AM) process in which metal powder ...
Substantial efforts have been placed on characterizing and modeling additive manufacturing processe...
In this study, the flow characteristics and behaviors of virgin and recycled Inconel powder for powd...
Powder-bed based Additive Manufacturing is a class of Additive Manufacturing (AM) processes that bon...
Additive manufacturing (AM) processes (including Powder-Bed, Powder-Blown and HPCS), use powders as ...
In a selective laser melting process, it is common to reuse the powder in consecutive cycles of the ...
Powder-bed based Additive Manufacturing is a class of Additive Manufacturing (AM) processes that bo...
In a selective laser melting process, it is common to reuse the powder in consecutive cycles of the ...
Powder-bed fusion is a class of Additive Manufacturing (AM) processes that bond successive layers of...
The development of a process chain for Inconel 718 production utilizing Binder Jetting has been inve...
In powder bed fusion additive manufacturing, the powder feedstock quality is of paramount importance...
The development of a process chain for Inconel 718 production utilizing Binder Jetting has been inve...
The development of a process chain for Inconel 718 production utilizing Binder Jetting has been inve...
Interest in additive manufacturing (AM) has grown exponentially in recent decades and is now being u...
Interest in additive manufacturing (AM) has grown exponentially in recent decades and is now being u...
Direct metal laser sintering (DMLS) is an additive manufacturing (AM) process in which metal powder ...
Substantial efforts have been placed on characterizing and modeling additive manufacturing processe...
In this study, the flow characteristics and behaviors of virgin and recycled Inconel powder for powd...
Powder-bed based Additive Manufacturing is a class of Additive Manufacturing (AM) processes that bon...
Additive manufacturing (AM) processes (including Powder-Bed, Powder-Blown and HPCS), use powders as ...
In a selective laser melting process, it is common to reuse the powder in consecutive cycles of the ...
Powder-bed based Additive Manufacturing is a class of Additive Manufacturing (AM) processes that bo...
In a selective laser melting process, it is common to reuse the powder in consecutive cycles of the ...
Powder-bed fusion is a class of Additive Manufacturing (AM) processes that bond successive layers of...
The development of a process chain for Inconel 718 production utilizing Binder Jetting has been inve...
In powder bed fusion additive manufacturing, the powder feedstock quality is of paramount importance...
The development of a process chain for Inconel 718 production utilizing Binder Jetting has been inve...
The development of a process chain for Inconel 718 production utilizing Binder Jetting has been inve...
Interest in additive manufacturing (AM) has grown exponentially in recent decades and is now being u...
Interest in additive manufacturing (AM) has grown exponentially in recent decades and is now being u...
Direct metal laser sintering (DMLS) is an additive manufacturing (AM) process in which metal powder ...
Substantial efforts have been placed on characterizing and modeling additive manufacturing processe...