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New Developments of Ti-Based Alloys for Biomedical Applications

TLDR
Efforts have been made to reveal the latest scenario of bulk and porous Ti-based materials for biomedical applications, emphasizing their current status, future opportunities and obstacles for expanded applications.
Abstract
Ti-based alloys are finding ever-increasing applications in biomaterials due to their excellent mechanical, physical and biological performance. Nowdays, low modulus β-type Ti-based alloys are still being developed. Meanwhile, porous Ti-based alloys are being developed as an alternative orthopedic implant material, as they can provide good biological fixation through bone tissue ingrowth into the porous network. This paper focuses on recent developments of biomedical Ti-based alloys. It can be divided into four main sections. The first section focuses on the fundamental requirements titanium biomaterial should fulfill and its market and application prospects. This section is followed by discussing basic phases, alloying elements and mechanical properties of low modulus β-type Ti-based alloys. Thermal treatment, grain size, texture and properties in Ti-based alloys and their limitations are dicussed in the third section. Finally, the fourth section reviews the influence of microstructural configurations on mechanical properties of porous Ti-based alloys and all known methods for fabricating porous Ti-based alloys. This section also reviews prospects and challenges of porous Ti-based alloys, emphasizing their current status, future opportunities and obstacles for expanded applications. Overall, efforts have been made to reveal the latest scenario of bulk and porous Ti-based materials for biomedical applications.

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Artificial neural network based optimization of prerequisite properties for the design of biocompatible titanium alloys

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Effect of zirconia content and sintering temperature on the density, microstructure, corrosion, and biocompatibility of the Ti–12Mo matrix for dental applications

TL;DR: In this article, the correlation between the microstructure, properties like density hardness, wear rates, corrosion resistance, and the biocompatibility of the fabricated Ti-12Mo/ZrO2 composites were studied.
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Nanostructured Coating of Non-Crystalline Tantalum Pentoxide on Polyetheretherketone Enhances RBMS Cells/HGE Cells Adhesion.

TL;DR: In this article, a bioactive coating of Tantalum pentoxide (TP) was applied on PEEK surface by vacuum evaporation and responses of rat bone marrow mesenchymal stem (RBMS) cells/human gingival epithelial (HGE) were studied.
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A review on the recent advances concerning the fatigue performance of titanium alloys for orthopedic applications

TL;DR: In this article, the authors present a review on recent advances in the fatigue behavior of Ti alloys, especially the main commercial compositions for orthopedic applications, where the major concern is related to the effect of the surface modification necessary to improve the osseointegration.
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Bioceramics: From Concept to Clinic

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