Design and Development of Low Stiffness Bioactive Ti Dental Implant with Layered Structure

Abstract

Biomaterials have a significant impact on the extension of human existence newlineby substituting damaged or malfunctioning body parts. As the elderly population newlinecontinues to grow, the application of biomaterials in contemporary society is escalating newlinedramatically. The current study focuses on extending the lifespan of dental implants. newlineRequirement for dental implant replacement surgery may result from corrosion and stress newlineshielding on the surface of the implant. As a result, it is necessary to develop bioactive newlineimplants that enhance osseointegration and reduce stress shielding in dental implants, newlineeffectively extending their lifespan. The present work examines a titanium dental implant newlinedue to its favorable corrosion resistance, biocompatibility, and low modulus in newlinecomparison to alternative materials used in dental implants. newlineThe aim of this study is to develop a data-driven model of Ti alloy that is newlineappropriate for dental implants through the utilization of machine learning (ML) newlinetechniques. To determine the optimal design for a dental implant-compatible threelayered newlinebioactive composite structure with a low modulus and sufficient strength. newlineCritically evaluate the microstructures and mechanical performances of three-layered newlinestructures fabricated according to the optimal design newline

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