Commercial Ti with a multimodal grain structure was successfully produced using cryorolling, followed by low-temperature annealing. This multimodal grain structure Ti exhibited a combination of high yield strength (926 MPa), a uniform elongation of 11% and a failure elongation of 23%. The strength enhancement was mainly derived from the ultrafine equiaxed grains, while the improved ductility originated from the large fraction of high-angle grain boundaries and the multimodal grain structure.<br /
Commercially pure titanium strengthened by severe plastic deformation constitutes an alternative to ...
The strength of a biomedical ββ-type alloy, Ti–25Nb–3Zr–3Mo–2Sn, was enhanced through severe plastic...
The most important room temperature mechanical properties of two-phase Ti-6Al-4V alloy with ultrafin...
Ultrafine-grained (UFG) commercial purity titanium (CP Ti) has a significant potential for use in me...
In the present study, multimodal nanostructured titanium was engineered using severe plastic deforma...
A dehydrided Ti powder of very high oxygen content was successfully consolidated using back pressure...
Interstitial oxygen embrittles titanium, particularly at cryogenic temperatures, which necessitates ...
A dehydrided Ti powder of very high oxygen content was successfully consolidated using back pressure...
The paper examined annealing behavior of ultrafine-grained Ti Grade 4. The ultrafine-grained microst...
The paper examined annealing behavior of ultrafine-grained Ti Grade 4. The ultrafine-grained microst...
A newly proposed multi-directional forging (MDF) was successfully applied to a commercially pure tit...
Room temperature equal-channel angular pressing (ECAP) was employed on commercial purity titanium in...
Microstructures together with mechanical properties of commercially pure titanium (CP-Ti) developed ...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Grain refinement can make conventional metals several times stronger, but this comes at dramatic los...
Commercially pure titanium strengthened by severe plastic deformation constitutes an alternative to ...
The strength of a biomedical ββ-type alloy, Ti–25Nb–3Zr–3Mo–2Sn, was enhanced through severe plastic...
The most important room temperature mechanical properties of two-phase Ti-6Al-4V alloy with ultrafin...
Ultrafine-grained (UFG) commercial purity titanium (CP Ti) has a significant potential for use in me...
In the present study, multimodal nanostructured titanium was engineered using severe plastic deforma...
A dehydrided Ti powder of very high oxygen content was successfully consolidated using back pressure...
Interstitial oxygen embrittles titanium, particularly at cryogenic temperatures, which necessitates ...
A dehydrided Ti powder of very high oxygen content was successfully consolidated using back pressure...
The paper examined annealing behavior of ultrafine-grained Ti Grade 4. The ultrafine-grained microst...
The paper examined annealing behavior of ultrafine-grained Ti Grade 4. The ultrafine-grained microst...
A newly proposed multi-directional forging (MDF) was successfully applied to a commercially pure tit...
Room temperature equal-channel angular pressing (ECAP) was employed on commercial purity titanium in...
Microstructures together with mechanical properties of commercially pure titanium (CP-Ti) developed ...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Grain refinement can make conventional metals several times stronger, but this comes at dramatic los...
Commercially pure titanium strengthened by severe plastic deformation constitutes an alternative to ...
The strength of a biomedical ββ-type alloy, Ti–25Nb–3Zr–3Mo–2Sn, was enhanced through severe plastic...
The most important room temperature mechanical properties of two-phase Ti-6Al-4V alloy with ultrafin...