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3D printing technologies in metallic implants: a thematic review on the techniques and. procedures
- Source :
- International Journal of Bioprinting
- Publication Year :
- 2020
- Publisher :
- WHIOCE PUBLISHING PTE LTD, SINGAPORE, 2020.
-
Abstract
- Additive manufacturing (AM) is among the most attractive methods to produce implants, the processes are very swift and it can be precisely controlled to meet patient’s requirement since they can be produced in exact shape, dimension, and even texture of different living tissues. Until now, lots of methods have emerged and used in this field with diverse characteristics. This review aims to comprehensively discuss 3D printing (3DP) technologies to manufacture metallic implants, especially on techniques and procedures. Various technologies based on their main properties are categorized, the effecting parameters are introduced, andthe history of AM technology is briefly analyzed. Subsequently, the utilization of these AM-manufactured components in medicine along with their effectual variables is discussed, and special attention is paid on to the production of porous scaffolds, taking pore size, density, etc., into consideration. Finally, 3DP of the popular metallic systems in medical applications such as titanium, Ti6Al4V, cobalt-chromium alloys, and shape memory alloys are studied. In general, AM manufactured implants need to comply with important requirements such as biocompatibility, suitable mechanical properties (strength and elastic modulus), surface conditions, custom-built designs, fast production, etc. This review aims to introduce the AM technologies in implant applications and find new ways to design more sophisticated methods and compatible implants that mimic the desired tissue functions.
- Subjects :
- Pore size
Technology
Computer science
Additive manufacturing
Materials Science (miscellaneous)
Materials Science
Biometals
3D printing
Review Article
Porous scaffolds
SURFACE-ROUGHNESS
SCAFFOLDS
Industrial and Manufacturing Engineering
Field (computer science)
Surface conditions
Engineering
DESIGN
Implants
Engineering, Biomedical
Materials Science, Biomaterials
Science & Technology
business.industry
Titanium alloy
MECHANICAL-PROPERTIES
Porous scaffold
Manufacturing engineering
3D printing techniques
POROUS TITANIUM
PROCESS PARAMETERS
LASER
business
BONE
SHAPE-MEMORY METAL
BEHAVIOR
Biotechnology
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- International Journal of Bioprinting
- Accession number :
- edsair.doi.dedup.....b47a2c9e12bda56bb11c6a8059781990