This paper investigated the use of electropolishing on the surface treatment of the Ti6Al4V parts made by the powder bed fusion processes including direct metal laser sintering (DMLS) and electron beam melting (EBM). A non‐aqueous alcohol based electrolyte was used, and the relationship between the process and surface roughness was evaluated. Based on the results, the feasibility of electropolishing as a potential alternative post‐surface treatment for additive manufactured metal parts was discussed.Mechanical Engineerin
ABSTRACT Electro-chemical polishing (ECP) was utilized to produce sub-micron surface finish on Inc...
The use of additive manufactured (AM) titanium-based materials has increased substantially for medic...
The recent breakthroughs of Additive Manufacturing (AM) have shed light on the ever more versatile t...
This paper investigated the use of electropolishing on the surface treatment of the Ti6Al4V parts ma...
The additive manufacturing process is gaining increasing interest due to the possibility of producin...
Recently, additive manufacturing technologies have begun to play a significant role in the industria...
In the course of the industrialization of the Additive Manufacturing (AM) process of metallic compo...
In various applications of additively manufactured Ni-based superalloys, high surface finish qualit...
Electron beam melting (EBM) has become one of the most promising additive manufacturing (AM) technol...
In this study, the effect of various parameters including the voltage, current, polishing time, tem...
Machined devices made of titanium or titanium alloys are widely used in biomedical applications. Rec...
Electron Beam Melting is an Additive Manufacturing technology that allows the production of items us...
In laser powder bed fusion (LPBF), also known as selective laser melting (SLM), the feedstock powder...
Unlike materials subtractive technologies, Additive Manufacturing (AM) works on producing near net s...
Additive manufacturing (AM) has gained prominence in the field of manufacturing and is becoming a st...
ABSTRACT Electro-chemical polishing (ECP) was utilized to produce sub-micron surface finish on Inc...
The use of additive manufactured (AM) titanium-based materials has increased substantially for medic...
The recent breakthroughs of Additive Manufacturing (AM) have shed light on the ever more versatile t...
This paper investigated the use of electropolishing on the surface treatment of the Ti6Al4V parts ma...
The additive manufacturing process is gaining increasing interest due to the possibility of producin...
Recently, additive manufacturing technologies have begun to play a significant role in the industria...
In the course of the industrialization of the Additive Manufacturing (AM) process of metallic compo...
In various applications of additively manufactured Ni-based superalloys, high surface finish qualit...
Electron beam melting (EBM) has become one of the most promising additive manufacturing (AM) technol...
In this study, the effect of various parameters including the voltage, current, polishing time, tem...
Machined devices made of titanium or titanium alloys are widely used in biomedical applications. Rec...
Electron Beam Melting is an Additive Manufacturing technology that allows the production of items us...
In laser powder bed fusion (LPBF), also known as selective laser melting (SLM), the feedstock powder...
Unlike materials subtractive technologies, Additive Manufacturing (AM) works on producing near net s...
Additive manufacturing (AM) has gained prominence in the field of manufacturing and is becoming a st...
ABSTRACT Electro-chemical polishing (ECP) was utilized to produce sub-micron surface finish on Inc...
The use of additive manufactured (AM) titanium-based materials has increased substantially for medic...
The recent breakthroughs of Additive Manufacturing (AM) have shed light on the ever more versatile t...