The industrial breakthrough of metal additive manufacturing processes mainly involves highly regulated sectors, e.g., aerospace and healthcare, where both part and process qualification are of paramount importance. Because of this, there is an increasing interest for in-situ monitoring tools able to detect process defects and unstable states since their onset stage during the process itself. In-situ measured quantities can be regarded as “signatures” of the process behaviour and proxies of the final part quality. This study relies on the idea that the by-products of laser powder bed fusion (LPBF) can be used as process signatures to design and implement statistical monitoring methods. In particular, this paper proposes a methodology to moni...
Additive manufacturing, in particular the powder bed fusion of metals using a laser beam, has a wide...
The goal of this work is to monitor the laser powder bed fusion (LPBF) process using an array of he...
Industry application of additive manufacturing demands strict in-process quality control procedures ...
The industrial breakthrough of metal additive manufacturing processes mainly involves highly regulat...
Despite continuous technological improvements in metal additive manufacturing (AM) systems, process ...
Laser powder bed fusion (L-PBF) is an additive manufacturing process which can produce nearly fully ...
In-situ monitoring of metal additive manufacturing (AM) processes is a key issue to determine the qu...
Key industrial sectors for the implementation of metal additive manufacturing (AM) systems, like aer...
This dissertation describes the development of advanced in-situ defect detection algorithms using an...
The layerwise production paradigm entailed by the Laser Powder Bed Fusion process makes potentially ...
In recent years, technological advancements have led to the industrialization of the laser powder be...
Additive manufacturing, in particular the powder bed fusion of metals using a laser beam, has a wide...
The goal of this work is to monitor the laser powder bed fusion (LPBF) process using an array of he...
Industry application of additive manufacturing demands strict in-process quality control procedures ...
The industrial breakthrough of metal additive manufacturing processes mainly involves highly regulat...
Despite continuous technological improvements in metal additive manufacturing (AM) systems, process ...
Laser powder bed fusion (L-PBF) is an additive manufacturing process which can produce nearly fully ...
In-situ monitoring of metal additive manufacturing (AM) processes is a key issue to determine the qu...
Key industrial sectors for the implementation of metal additive manufacturing (AM) systems, like aer...
This dissertation describes the development of advanced in-situ defect detection algorithms using an...
The layerwise production paradigm entailed by the Laser Powder Bed Fusion process makes potentially ...
In recent years, technological advancements have led to the industrialization of the laser powder be...
Additive manufacturing, in particular the powder bed fusion of metals using a laser beam, has a wide...
The goal of this work is to monitor the laser powder bed fusion (LPBF) process using an array of he...
Industry application of additive manufacturing demands strict in-process quality control procedures ...