CORROSION RESISTANCE METALLIC BIOMATERIALS SIMULATED is a M.Tech project topic for Metallurgical & Materials Engineering. It gives students a clear starting point for research, implementation planning, and documentation.
CORROSION RESISTANCE METALLIC BIOMATERIALS SIMULATED Project Details
| Abstract |
For thousands of years, the use of biomaterials has been essential to improving quality and length of human life. While in the past, the use of biomaterials was limited to wood, gold, and linen, the modern era has brought about advances in both diagnostics and materials science. This has made implantology a key area of development. Most recently, in disciplines like bio-dentistry, bio-orthopedics, bio-cardiology, and bio-neurosurgery, bio-implants are becoming commonplace. These bio-implants are made from a range of materials, including metals, alloys, polymers, ceramics, and composites. Each of these materials face a unique set of challenges when introduced into the biochemical environment of the human body.
A major problem withΒ metallic implants is corrosion. Corrosion is the progressive destruction of a material due to the electrochemical interactions within the body. This can lead to a loss of structural integrity of the implant, the release of toxins, and a negative biological reaction. Because of this, improving the corrosion resistance of metallic biomarkers is important to aid in the improvement of physiological conditions, and to help determine the long-term effectiveness and safety of implants. |
| Reference Paper |
CORROSION RESISTANCE OF METALLIC BIOMATERIALS IN SIMULATED BODY FLUIDS |
| Domain |
Metallurgical & Materials Engineering |
| Sub-Domain |
Advanced Materials / Biomaterials |
| PDF Download |
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