Laser and electron‐beam powder‐bed additive manufacturing of metallic implants: A review on processes, materials and designs

Лазерное и электронно-лучевое аддитивное производство металлических имплантатов методом послойного нанесения порошка: обзор процессов, материалов и конструкций
Swee Leong Sing, Wai Yee Yeong, Jia An, Florencia Edith Wiria
2015-10-21

Ti6Al4V biomaterialselectron beam meltingmetallic orthopaedic implantspatient-specific designselective laser melting
Additive manufacturing (AM), also commonly known as 3D printing, allows the direct fabrication of functional parts with complex shapes from digital models. In this review, the current progress of two AM processes suitable for metallic orthopaedic implant applications, namely selective laser melting (SLM) and electron beam melting (EBM) are presented. Several critical design factors such as the need for data acquisition for patient-specific design, design dependent porosity for osteo-inductive implants, surface topology of the implants and design for reduction of stress-shielding in implants are discussed. Additive manufactured biomaterials such as 316L stainless steel, titanium-6aluminium-4vanadium (Ti6Al4V) and cobalt-chromium (CoCr) are highlighted. Limitations and future potential of such technologies are also explored.
1
316L stainless steel, Ti6Al4V, and cobalt-chromium are highlighted as key biomaterials for laser- and electron-beam powder-bed manufacturing, alongside discussed limitations and future potential.
2
Design-dependent porosity and surface topology are important for promoting osteo-inductive behavior and implant integration.
3
Implant architectures can be designed to reduce stress shielding, a critical concern in orthopaedic implant performance.
4
Patient-specific implant design requires data acquisition from individual patients and digital-model-based fabrication.
5
The review evaluates selective laser melting and electron beam melting as metallic additive-manufacturing processes for orthopaedic implants.

Selective laser melting (SLM) and electron beam melting (EBM) powder-bed additive manufacturing processes for metallic orthopedic implants

the processes, biomaterials, and design factors governing implant fabrication and performance, including patient-specific design, porosity, surface topology, and stress shielding

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2015-10-21
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Swee Leong Sing
Wai Yee Yeong
Jia An
Florencia Edith Wiria
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