This study focuses on the surface modification of a near beta-type Ti-27 wt.% Nb alloy by alkali-heat treatment. The influence of alkali concentration, alkali-treated time and alkali-treated temperature on the microstructure and constitutional phases of the modified surface is investigated by SEM, XRD and ICP. Immersion experiments in a simulated body fluid (SBF) were carried out to examine the Ca-P phase forming ability of the modified surfaces. The SEM observation and XRD analysis revealed that a sodium titanate layer is formed after alkali-heat treatment. The morphology and Ca-P phase forming of the layer are greatly affected by the surface roughness of the samples, the alkali concentration, the alkali-treated time and alkali-treated tem...
Alternatives to the plasma spraying method have been developed to obtain calcium phosphate coatings,...
The surface modification of titanium alloys is an effective method to improve their biocompatibility...
This work focuses on the evaluation of modified surfaces on Ti produced by powder metallurgy. These ...
Ti6Al4V alloy has low bioactivity and surface treatment could improve its bioactivity. However, Ti6A...
A porous Ti–18 at.%Nb–4 at.%Sn (hereafter, Ti–18Nb–4Sn) alloy was prepared b...
A porous Ti–18 at.%Nb–4 at.%Sn (hereafter, Ti–18Nb–4Sn) alloy was prepared b...
Advanced additive manufacturing techniques such as electron beam melting (EBM), can produce highly p...
<p></p><p>ABSTRACT Titanium is widely used as dental implant since it is bio-inert and osseointegrat...
Ti-Nb alloys have attracted growing attention for biomedical implant application due its low elastic...
Copyright © 2013 Patricia Capellato et al. This is an open access article distributed under the Crea...
Titanium shows minimal encapsulation when implanted in bone tissue and develops a direct interfacial...
Alkali heat treatment (AHT) has been widely used as an effective surface chemical modification to im...
Titanium and its alloys have been used as bone-replacement implants due to their excellent corrosion...
Titanium and some of its alloys are widely used as load-bearing implant materials. In particular, ti...
The Ti-15Mo-xNb system integrates a new class of titanium alloys without the presence of aluminum an...
Alternatives to the plasma spraying method have been developed to obtain calcium phosphate coatings,...
The surface modification of titanium alloys is an effective method to improve their biocompatibility...
This work focuses on the evaluation of modified surfaces on Ti produced by powder metallurgy. These ...
Ti6Al4V alloy has low bioactivity and surface treatment could improve its bioactivity. However, Ti6A...
A porous Ti–18 at.%Nb–4 at.%Sn (hereafter, Ti–18Nb–4Sn) alloy was prepared b...
A porous Ti–18 at.%Nb–4 at.%Sn (hereafter, Ti–18Nb–4Sn) alloy was prepared b...
Advanced additive manufacturing techniques such as electron beam melting (EBM), can produce highly p...
<p></p><p>ABSTRACT Titanium is widely used as dental implant since it is bio-inert and osseointegrat...
Ti-Nb alloys have attracted growing attention for biomedical implant application due its low elastic...
Copyright © 2013 Patricia Capellato et al. This is an open access article distributed under the Crea...
Titanium shows minimal encapsulation when implanted in bone tissue and develops a direct interfacial...
Alkali heat treatment (AHT) has been widely used as an effective surface chemical modification to im...
Titanium and its alloys have been used as bone-replacement implants due to their excellent corrosion...
Titanium and some of its alloys are widely used as load-bearing implant materials. In particular, ti...
The Ti-15Mo-xNb system integrates a new class of titanium alloys without the presence of aluminum an...
Alternatives to the plasma spraying method have been developed to obtain calcium phosphate coatings,...
The surface modification of titanium alloys is an effective method to improve their biocompatibility...
This work focuses on the evaluation of modified surfaces on Ti produced by powder metallurgy. These ...