Development of AM Technologies for Metals in the Sector of Medical Implants

Разработка технологий аддитивного производства металлов в секторе медицинских имплантатов
Irene Buj-Corral, Aitor Tejo‐Otero, Felip Fenollosa-Artés
2020-05-23

additive manufacturingdirect energy deposition (DED)electron beam melting (EBM)metallic implantsselective laser melting (SLM)
Additive manufacturing (AM) processes have undergone significant progress in recent years, having been implemented in sectors as diverse as automotive, aerospace, electrical component manufacturing, etc. In the medical sector, different devices are printed, such as implants, surgical guides, scaffolds, tissue engineering, etc. Although nowadays some implants are made of plastics or ceramics, metals have been traditionally employed in their manufacture. However, metallic implants obtained by traditional methods such as machining have the drawbacks that they are manufactured in standard sizes, and that it is difficult to obtain porous structures that favor fixation of the prostheses by means of osseointegration. The present paper presents an overview of the use of AM technologies to manufacture metallic implants. First, the different technologies used for metals are presented, focusing on the main advantages and drawbacks of each one of them. Considered technologies are binder jetting (BJ), selective laser melting (SLM), electron beam melting (EBM), direct energy deposition (DED), and material extrusion by fused filament fabrication (FFF) with metal filled polymers. Then, different metals used in the medical sector are listed, and their properties are summarized, with the focus on Ti and CoCr alloys. They are divided into two groups, namely ferrous and non-ferrous alloys. Finally, the state-of-art about the manufacture of metallic implants with AM technologies is summarized. The present paper will help to explain the latest progress in the application of AM processes to the manufacture of implants.
1
AM technologies are increasingly applied to medical devices including metallic implants, surgical guides, scaffolds, and tissue engineering components.
2
Metals used for medical implants are categorized into ferrous and non-ferrous alloys, with a focused summary of titanium (Ti) and cobalt-chromium (CoCr) alloy properties relevant to implants.
3
The manuscript summarizes the state-of-the-art progress in manufacturing metallic implants with AM, aiming to clarify recent advancements and applications of AM in implant production.
4
The paper reviews metal AM technologies—binder jetting (BJ), selective laser melting (SLM), electron beam melting (EBM), direct energy deposition (DED), and metal-filled FFF—highlighting each method's main advantages and drawbacks.
5
Traditional machining of metallic implants produces standard sizes and struggles to create porous structures that promote osseointegration.

Metallic medical implants manufactured by additive manufacturing (AM) technologies

Development, application and comparative evaluation of AM technologies and metal materials (e.g., Ti and CoCr alloys) for manufacturing implants, including advantages, drawbacks, and ability to produce porous structures for osseointegration

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2020-05-23
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Irene Buj-Corral
Aitor Tejo‐Otero
Felip Fenollosa-Artés
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