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Biomedical Applications of Titanium Alloys: A Comprehensive Review
by
Lanzutti, Alex
, Marin, Elia
in
Biocompatibility
/ Biomedical engineering
/ Biomedical materials
/ Cardiovascular equipment
/ Chemical elements
/ Corrosion and anti-corrosives
/ Corrosion resistance
/ Dentistry
/ Implant dentures
/ Joint surgery
/ Machinability
/ Mechanical properties
/ Medical electronics
/ Medical equipment
/ Metal fatigue
/ Orthopaedic implants
/ Orthopedics
/ Phase transitions
/ Prostheses
/ Review
/ Specialty metals industry
/ Surgical implants
/ Temperature
/ Titanium
/ Titanium alloys
/ Titanium base alloys
/ Transplants & implants
2023
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Biomedical Applications of Titanium Alloys: A Comprehensive Review
by
Lanzutti, Alex
, Marin, Elia
in
Biocompatibility
/ Biomedical engineering
/ Biomedical materials
/ Cardiovascular equipment
/ Chemical elements
/ Corrosion and anti-corrosives
/ Corrosion resistance
/ Dentistry
/ Implant dentures
/ Joint surgery
/ Machinability
/ Mechanical properties
/ Medical electronics
/ Medical equipment
/ Metal fatigue
/ Orthopaedic implants
/ Orthopedics
/ Phase transitions
/ Prostheses
/ Review
/ Specialty metals industry
/ Surgical implants
/ Temperature
/ Titanium
/ Titanium alloys
/ Titanium base alloys
/ Transplants & implants
2023
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Do you wish to request the book?
Biomedical Applications of Titanium Alloys: A Comprehensive Review
by
Lanzutti, Alex
, Marin, Elia
in
Biocompatibility
/ Biomedical engineering
/ Biomedical materials
/ Cardiovascular equipment
/ Chemical elements
/ Corrosion and anti-corrosives
/ Corrosion resistance
/ Dentistry
/ Implant dentures
/ Joint surgery
/ Machinability
/ Mechanical properties
/ Medical electronics
/ Medical equipment
/ Metal fatigue
/ Orthopaedic implants
/ Orthopedics
/ Phase transitions
/ Prostheses
/ Review
/ Specialty metals industry
/ Surgical implants
/ Temperature
/ Titanium
/ Titanium alloys
/ Titanium base alloys
/ Transplants & implants
2023
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Biomedical Applications of Titanium Alloys: A Comprehensive Review
Journal Article
Biomedical Applications of Titanium Alloys: A Comprehensive Review
2023
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Overview
Titanium alloys have emerged as the most successful metallic material to ever be applied in the field of biomedical engineering. This comprehensive review covers the history of titanium in medicine, the properties of titanium and its alloys, the production technologies used to produce biomedical implants, and the most common uses for titanium and its alloys, ranging from orthopedic implants to dental prosthetics and cardiovascular devices. At the core of this success lies the combination of machinability, mechanical strength, biocompatibility, and corrosion resistance. This unique combination of useful traits has positioned titanium alloys as an indispensable material for biomedical engineering applications, enabling safer, more durable, and more efficient treatments for patients affected by various kinds of pathologies. This review takes an in-depth journey into the inherent properties that define titanium alloys and which of them are advantageous for biomedical use. It explores their production techniques and the fabrication methodologies that are utilized to machine them into their final shape. The biomedical applications of titanium alloys are then categorized and described in detail, focusing on which specific advantages titanium alloys are present when compared to other materials. This review not only captures the current state of the art, but also explores the future possibilities and limitations of titanium alloys applied in the biomedical field.
Publisher
MDPI AG,MDPI
Subject
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