[HTML][HTML] Development of new β Ti and Zr-based alloys in the Ta-(75-x) Ti-xZr system

PAB Kuroda, CR Grandini, CRM Afonso - Journal of Materials Research …, 2024 - Elsevier
The main objective of this study was to produce two new biomedical alloys, Ta-(75-x) Ti-xZr
(x= 25, 50 wt%), and to carry out a detailed analysis of the crystal structures, phase …

Development and characterization of new Ti-25Ta-Zr alloys for biomedical applications

PAB Kuroda, FF Quadros, MV Nascimento… - Materials Science …, 2021 - Trans Tech Publ
This paper deals with the study of the development, structural and microstructural
characterization and, selected mechanical properties of Ti-25Ta-50Zr alloy for biomedical …

The Effect of Solution Heat Treatment Temperature on Phase Transformations, Microstructure and Properties of Ti-25Ta-xZr Alloys Used as a Biomaterial

PAB Kuroda, FF Quadros, CRM Afonso… - Journal of Materials …, 2020 - Springer
This paper describes a study of the effect of solution heat treatment temperature (500, 750
and 1000° C) on the phase transformations, microstructure, microhardness and Young's …

Production of a Novel Biomedical β-Type Titanium Alloy Ti-23.6 Nb-5.1 Mo-6.7 Zr with Low Young's Modulus

ARV Nunes, S Borborema, LS Araújo, LH de Almeida… - Metals, 2022 - mdpi.com
Metastable β titanium alloys are developed for biomedical applications due to their low
Young's moduli and functional properties. These alloys can be fitted to different parts of …

[PDF][PDF] High Temperature Mechanical Properties and Microstructure of Ti-Nb-Zr-Ta-O Biomedical Alloy

D Preisler, J Stráský, P Harcuba… - Acta Phys. Pol …, 2018 - przyrbwn.icm.edu.pl
Alloys that retain pure β phase after quenching, which ensures lower Young's modulus [5],
and contain only biocompatible elements (Nb, Ta, Mo, Zr)[6] are extensively studied …

Unveiling the effect of Nb and Zr additions on microstructure and properties of β Ti-25Ta alloys for biomedical applications

PAB Kuroda, RFM dos Santos, CR Grandini… - Materials …, 2024 - Elsevier
This study aims to analyze the influence of niobium and zirconium in the structure,
microstructure, and mechanical properties of quaternary Ti-25Ta-Zr-Nb alloys system: Ti …

Design and Microstructure of β-Type Ti-25.6 Nb-19.4 Ta Alloy for Biomedical Application

Y Yongjian, M Xiumei, S Wei - 稀有金属, 2010 - jmonline.org
利用钛合金 β 稳定系数 K_β 设计制备了 4 种具有不同组元和成分的医用钛合金, 4 种钛合金的
K_β 值均在 1.0~ 1.5 之间, 属于理论上的近 β 型钛合金. 通过 X 射线衍射分析和背散射电子衍射 …

Microstructural and mechanical characterization of biomedical Ti–Nb–Zr (–Ta) alloys

LM Elias, SG Schneider, S Schneider, HM Silva… - Materials Science and …, 2006 - Elsevier
In recent years there has been a significant development of novel implant alloys based on β-
Ti such as Ti–Nb–Zr and Ti–Nb–Zr–Ta alloys systems. The purpose of this work is to provide …

Effects of Fe and Nb content on microstructure and mechanical characteristics of biomedical Ti based alloys

QH Guo, YZ Zhan, XJ Zhang, Y Du, MN Lin… - Materials Science …, 2010 - Taylor & Francis
The microstructures and resulting mechanical properties of Ti–x Nb–6Zr–7· 5Sn–y Fe (x= 24,
30, 35 and y= 1, 2, 2· 5 wt-%) alloys were investigated for biomedical application. The …

The Effect of Solution Heat Treatment Time on the Phase Formation and Selected Mechanical Properties of Ti-25Ta-xZr Alloys for Application as Biomaterials

PAB Kuroda, FF Quadros, CRM Afonso… - Journal of Materials …, 2021 - Springer
This study analyzed the influence of solution heat treatment on the structure, microstructure,
hardness, and elastic modulus of a ternary alloys Ti-25Ta-xZr system, where the zirconium …