The formation of grain boundary (GB) brittle carbides with a complex three-dimensional (3-D) morphology can be detrimental to both the fatigue properties and corrosion resistance of a biomedical titanium alloy. A detailed microscopic study has been performed on an as-sintered biomedical Ti-15Mo (in wt.%) alloy containing 0.032 wt.% C. A noticeable presence of a carbon-enriched phase has been observed along the GB, although the carbon content is well below the maximum carbon limit of 0.1 wt.% specified by ASTM Standard F2066. Transmission electron microscopy (TEM) identified that the carbon-enriched phase is face-centred cubic Ti2C. 3-D tomography reconstruction revealed that the Ti2C structure has morphology similar to primary alpha-Ti. Nan...
The grain boundary segregation behavior of titanium and carbon have been characterized in two titani...
At present, researchers pay great attention to the development of metastable β-titanium alloys. A ta...
Titanium and its alloys are favourite materials for medical implant applications. They owe this popu...
The formation of grain boundary (GB) brittle carbides with a complex three-dimensional (3-D) morphol...
Owing to their relatively low Young's modulus, high strength, good resistance to corrosion, and...
[EN] The current study investigates the influence of carbon addition on the microstructural and micr...
In a way so far unmatched in any single study, this paper presents the complex characteristics of co...
Abstract. The grain boundary segregation behavior of titanium and carbon have been characterized in ...
Carbon is a powerful alloying element for titanium alloys. In this work, trace carbon is alloyed wit...
SIGLEAvailable from British Library Document Supply Centre-DSC:8019.322(92501) / BLDSC - British Lib...
Effects of titanium addition on as-cast austenite grain size in 0.2 mass% carbon steel cooled at 0.0...
The article shows the effect of the increased carbon content on the microstructure and properties of...
Carbon is a powerful alloying element for titanium alloys. In this work, trace carbon is alloyed wit...
This paper describes the microstructure and properties of titanium-based composites obtained as a re...
The effect of carbon content on microstructure and mechanical properties of the transition (α+β)-tit...
The grain boundary segregation behavior of titanium and carbon have been characterized in two titani...
At present, researchers pay great attention to the development of metastable β-titanium alloys. A ta...
Titanium and its alloys are favourite materials for medical implant applications. They owe this popu...
The formation of grain boundary (GB) brittle carbides with a complex three-dimensional (3-D) morphol...
Owing to their relatively low Young's modulus, high strength, good resistance to corrosion, and...
[EN] The current study investigates the influence of carbon addition on the microstructural and micr...
In a way so far unmatched in any single study, this paper presents the complex characteristics of co...
Abstract. The grain boundary segregation behavior of titanium and carbon have been characterized in ...
Carbon is a powerful alloying element for titanium alloys. In this work, trace carbon is alloyed wit...
SIGLEAvailable from British Library Document Supply Centre-DSC:8019.322(92501) / BLDSC - British Lib...
Effects of titanium addition on as-cast austenite grain size in 0.2 mass% carbon steel cooled at 0.0...
The article shows the effect of the increased carbon content on the microstructure and properties of...
Carbon is a powerful alloying element for titanium alloys. In this work, trace carbon is alloyed wit...
This paper describes the microstructure and properties of titanium-based composites obtained as a re...
The effect of carbon content on microstructure and mechanical properties of the transition (α+β)-tit...
The grain boundary segregation behavior of titanium and carbon have been characterized in two titani...
At present, researchers pay great attention to the development of metastable β-titanium alloys. A ta...
Titanium and its alloys are favourite materials for medical implant applications. They owe this popu...