AbstractInternal defects such as voids and porosity directly influence mechanical properties, durability, service life and other characteristics of industrial parts. There are several non-destructive and destructive methods for defects detection and evaluation. Recently, X-ray Computed Tomography (CT) has emerged as an effective tool for geometrical characterization of internal defects. 3D information about internal voids/porosity extracted from CT datasets can be utilized in many applications, such as production processes optimization and quality control. However, there are still challenges in using CT as a traceable method for internal voids dimensional measurements. In order to enhance the accuracy and reliability of CT porosity measurem...
AbstractThe deployment of additive manufacturing processes relies on part quality, specifically the ...
Non-destructive testing (NDT) is a technique used to analyse the internal and external features of a...
Metal Additive Manufacturing (AM) has great potential to revolutionize manufacturing industries, but...
Internal defects such as voids and porosity directly influence mechanical properties, durability, se...
AbstractInternal defects such as voids and porosity directly influence mechanical properties, durabi...
Accurate identification and measurement of internal voids and porosity is an important step towards ...
Manufacturing technologies deliver products that can suffer from various defects, one of which is in...
Internal porosity is an inherent phenomenon to many manufacturing processes, such as casting, additi...
Porosity is used to describe any void or hole found in a material. However, characterizing them in t...
Recent advances in Additive Manufacturing (AM) have shown a great potential in production of intrica...
Additive Manufacturing technologies found many applications in the last decade in many industries. A...
Additive manufacturing (AM) is emerging as an important manufacturing sector, due to its almost unli...
This paper describes a new non-destructive approach for porosity measurement developed in response t...
Abstract The deployment of additive manufacturing processes relies on part quality, specifically the...
Additive manufacturing (AM) is a process whereby components are built layer-by-layer by means of pow...
AbstractThe deployment of additive manufacturing processes relies on part quality, specifically the ...
Non-destructive testing (NDT) is a technique used to analyse the internal and external features of a...
Metal Additive Manufacturing (AM) has great potential to revolutionize manufacturing industries, but...
Internal defects such as voids and porosity directly influence mechanical properties, durability, se...
AbstractInternal defects such as voids and porosity directly influence mechanical properties, durabi...
Accurate identification and measurement of internal voids and porosity is an important step towards ...
Manufacturing technologies deliver products that can suffer from various defects, one of which is in...
Internal porosity is an inherent phenomenon to many manufacturing processes, such as casting, additi...
Porosity is used to describe any void or hole found in a material. However, characterizing them in t...
Recent advances in Additive Manufacturing (AM) have shown a great potential in production of intrica...
Additive Manufacturing technologies found many applications in the last decade in many industries. A...
Additive manufacturing (AM) is emerging as an important manufacturing sector, due to its almost unli...
This paper describes a new non-destructive approach for porosity measurement developed in response t...
Abstract The deployment of additive manufacturing processes relies on part quality, specifically the...
Additive manufacturing (AM) is a process whereby components are built layer-by-layer by means of pow...
AbstractThe deployment of additive manufacturing processes relies on part quality, specifically the ...
Non-destructive testing (NDT) is a technique used to analyse the internal and external features of a...
Metal Additive Manufacturing (AM) has great potential to revolutionize manufacturing industries, but...