Influence of laser modification on the surface character of biomaterials: Titanium and its alloys—A review
J Sypniewska, M Szkodo - Coatings, 2022 - mdpi.com
Laser surface modification is a widely available and simple technique that can be applied to
different types of materials. It has been shown that by using a laser heat source …
different types of materials. It has been shown that by using a laser heat source …
Strengthening mechanism and corrosion resistance of beta-type Ti-Nb-Zr-Mn alloys
In order to achieve an effective balance between plasticity and strength, a group of Ti-26Nb-
xZr-yMn (x= 4, 7, 10 wt% and y= 3, 5 wt%) alloys were designed to evaluate the effects of Mn …
xZr-yMn (x= 4, 7, 10 wt% and y= 3, 5 wt%) alloys were designed to evaluate the effects of Mn …
Structural and mechanical evaluation of a new Ti-Nb-Mo alloy produced by high-energy ball milling with variable milling time for biomedical applications
The main focus of this work is to investigate the impact of varying milling times (2 to 18 h) on
the structural and mechanical properties of the developed Ti-Nb-Mo alloy. The morphology …
the structural and mechanical properties of the developed Ti-Nb-Mo alloy. The morphology …
[HTML][HTML] Cold rolling deformation and annealing behavior of a β-type Ti–34Nb–25Zr titanium alloy for biomedical applications
In this study, the microstructures and mechanical properties of a newly developed β-type Ti–
34Nb–25Zr (TNZ) alloy after cold rolling at different reduction ratios and recrystallization …
34Nb–25Zr (TNZ) alloy after cold rolling at different reduction ratios and recrystallization …
[HTML][HTML] Effect of milling time on structural, physical and tribological behavior of a newly developed Ti-Nb-Zr alloy for biomedical applications
Titanium (Ti)-based alloys with only a β-phase have attracted academic and industrial
interest for orthopedic application, due to their close properties to those of tissues. The …
interest for orthopedic application, due to their close properties to those of tissues. The …
[HTML][HTML] Effects of Ti content on the microstructure, mechanical properties and corrosion behavior of TixZrNb alloys
H Liao, M Wu, D Deng, W Zhong, B Xiong… - Journal of Materials …, 2022 - Elsevier
The study reports the effects of Ti content on microstructures, mechanical properties and
corrosion behavior of the Ti x ZrNb alloys. The BCC phase Ti x ZrNb (x= 1, 1.5 and 2 mol) …
corrosion behavior of the Ti x ZrNb alloys. The BCC phase Ti x ZrNb (x= 1, 1.5 and 2 mol) …
Ti-Zr-Nb based BCC solid solution alloy containing trace Cu and Ag with low modulus and excellent antibacterial properties
X Bao, T Maimaitijuma, B Yu, X Li, G Xi, S Liu… - Materials Today …, 2022 - Elsevier
A new series of β-type biomedical alloys Ti 50 Zr 25 Nb 20 Cu 5− x Ag x (x= 0, 1 and 2.5
at%) have been developed. Mechanical properties, antibacterial properties, and …
at%) have been developed. Mechanical properties, antibacterial properties, and …
Electrophoretic Deposition and Characteristics of Chitosan–Nanosilver Composite Coatings on a Nanotubular TiO2 Layer
M Bartmański, Ł Pawłowski, A Zieliński… - Coatings, 2020 - mdpi.com
The surface treatment of titanium implants has been applied mainly to increase surface
bioactivity and, more recently, to introduce antibacterial properties. To this end, composite …
bioactivity and, more recently, to introduce antibacterial properties. To this end, composite …
Understanding the enhanced corrosion performance of two novel Ti-based biomedical high entropy alloys
The microstructure and corrosion behavior of two novel biomedical high entropy alloys
(HEA) s, namely Hf 27 Nb 12 Ta 10 Ti 23 Zr 28 and Hf 30 Nb 14 Ta 10 Ti 28 Zr 18 that were …
(HEA) s, namely Hf 27 Nb 12 Ta 10 Ti 23 Zr 28 and Hf 30 Nb 14 Ta 10 Ti 28 Zr 18 that were …
Assessment of mechanical, chemical, and biological properties of Ti-Nb-Zr alloy for medical applications
V Hoppe, P Szymczyk-Ziółkowska, M Rusińska… - Materials, 2020 - mdpi.com
The purpose of this work is to obtain comprehensive reference data of the Ti-13Nb-13Zr
alloy base material: its microstructure, mechanical, and physicochemical properties. In order …
alloy base material: its microstructure, mechanical, and physicochemical properties. In order …