In recent years, digitizing and automation have gained an important place in the manufacturing of medical products. However, many dental parts are still being produced by manual and inefficient conventional methods. This paper presents a fully digital and fast procedure for the design and manufacturing of implant-supported frameworks for complex dental prostheses by means of Selective Laser Sintering (SLS) or Selective Laser Melting (SLM). Offering a digital solution to the dental profession implies a real challenge because patient and dentist set high requirements on quality, material and precision. During this study, frameworks were manufactured by SLS/SLM of stainless steel, Ti6Al4V and a dental CoCr-alloy. The accuracy of the final fram...
Purpose/aim: Selective Laser Melting (SLM) technology used for the production of a full-arch prosth...
Purpose – The computer-aided design (CAD) and manufacture of custom-fitting surgical guides have bee...
The aim of this study is to investigate the direct manufacturing of a titanium mandible implant via ...
In recent years, digitizing and automation have gained an important place in the manufacturing of me...
The additive technologies characterize with the building of one layer at a time from a powder or liq...
Purpose This paper seeks to investigate the possibility of producing medical or dental parts by sele...
In recent years, digitizing and automation have gained an important place in fabrication of medical ...
In recent years, digitizing and automation have gained an important place in fabrication of medical ...
In recent years, digitizing and automation have gained an important place in fabrication of medical...
Over the last decade Reverse Engineering, Computer-Aided Design, Computer- Aided Manufacturing and R...
Metal additive manufacturing (AM), especially selective laser melting (SLM), has been receiving part...
Selective laser melting (SLM) is one of the additive manufacturing (AM) processes that fabricates co...
An edentulous patient was rehabilitated with maxillary metal-ceramic and mandibular metal-resin impl...
In this article are studied the possibilities of manufacturing human teeth using the Selective Laser...
Statement of problem. Selective laser melting (SLM) is a promising additive technology for clinical ...
Purpose/aim: Selective Laser Melting (SLM) technology used for the production of a full-arch prosth...
Purpose – The computer-aided design (CAD) and manufacture of custom-fitting surgical guides have bee...
The aim of this study is to investigate the direct manufacturing of a titanium mandible implant via ...
In recent years, digitizing and automation have gained an important place in the manufacturing of me...
The additive technologies characterize with the building of one layer at a time from a powder or liq...
Purpose This paper seeks to investigate the possibility of producing medical or dental parts by sele...
In recent years, digitizing and automation have gained an important place in fabrication of medical ...
In recent years, digitizing and automation have gained an important place in fabrication of medical ...
In recent years, digitizing and automation have gained an important place in fabrication of medical...
Over the last decade Reverse Engineering, Computer-Aided Design, Computer- Aided Manufacturing and R...
Metal additive manufacturing (AM), especially selective laser melting (SLM), has been receiving part...
Selective laser melting (SLM) is one of the additive manufacturing (AM) processes that fabricates co...
An edentulous patient was rehabilitated with maxillary metal-ceramic and mandibular metal-resin impl...
In this article are studied the possibilities of manufacturing human teeth using the Selective Laser...
Statement of problem. Selective laser melting (SLM) is a promising additive technology for clinical ...
Purpose/aim: Selective Laser Melting (SLM) technology used for the production of a full-arch prosth...
Purpose – The computer-aided design (CAD) and manufacture of custom-fitting surgical guides have bee...
The aim of this study is to investigate the direct manufacturing of a titanium mandible implant via ...