Ultrafine-grained (UFG) commercially pure (Ti Grade 2) and high-purity (Ti 99.99%) titanium can be a good alternative to less biocompatible Ti alloys in many biomedical applications. Their severe plastic deformation may lead to a substantial increase of strength, but their highly refined microstructure show a lower thermal stability which may limit their range of applications. The purpose of this study was to investigate the effect of interstitial elements on the thermal stability of UFG Ti Grade 2 and high-purity Ti 99.99% processed by a multi-pass cold rolling to the total thickness reduction of 90%. The severely cold rolled Ti sheets were annealed at temperature in the range of 100–600 °C for 1 h and, subsequently, they were evaluated in...
The publication describes the study of durability in tensile creep of VT1-0 commercial titanium in i...
The effect of strain rate, temperature, grain size, and texture on the substructure and mechanical r...
Titanium-based alloys are constantly improved to obtain properties suitable for their use. Improving...
Ultrafine-grained (UFG) commercially pure (Ti Grade 2) and high-purity (Ti 99.99%) titanium can be a...
High-pressure torsion (HPT) was conducted under 6.0 GPa on commercial purity titanium up to 10 turns...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
The paper examined annealing behavior of ultrafine-grained Ti Grade 4. The ultrafine-grained microst...
Ultrafine-grained (UFG) commercial purity titanium (CP Ti) has a significant potential for use in me...
The paper considers the effect of a long-duration heating at a service temperature of 450oC on VT8M-...
The aim of this research was to investigate the thermal stability of an ultrafine grained metastable...
To provide insight into the mechanical behavior and microstructural evolution of bulk ultrafine-grai...
The influences of process annealing temperature during cold rolling on microstructure and mechanical...
In present work the properties of comercially pure titanium fouth grade processed by equal channel a...
Interstitial oxygen embrittles titanium, particularly at cryogenic temperatures, which necessitates ...
Commercially pure titanium strengthened by severe plastic deformation constitutes an alternative to ...
The publication describes the study of durability in tensile creep of VT1-0 commercial titanium in i...
The effect of strain rate, temperature, grain size, and texture on the substructure and mechanical r...
Titanium-based alloys are constantly improved to obtain properties suitable for their use. Improving...
Ultrafine-grained (UFG) commercially pure (Ti Grade 2) and high-purity (Ti 99.99%) titanium can be a...
High-pressure torsion (HPT) was conducted under 6.0 GPa on commercial purity titanium up to 10 turns...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
The paper examined annealing behavior of ultrafine-grained Ti Grade 4. The ultrafine-grained microst...
Ultrafine-grained (UFG) commercial purity titanium (CP Ti) has a significant potential for use in me...
The paper considers the effect of a long-duration heating at a service temperature of 450oC on VT8M-...
The aim of this research was to investigate the thermal stability of an ultrafine grained metastable...
To provide insight into the mechanical behavior and microstructural evolution of bulk ultrafine-grai...
The influences of process annealing temperature during cold rolling on microstructure and mechanical...
In present work the properties of comercially pure titanium fouth grade processed by equal channel a...
Interstitial oxygen embrittles titanium, particularly at cryogenic temperatures, which necessitates ...
Commercially pure titanium strengthened by severe plastic deformation constitutes an alternative to ...
The publication describes the study of durability in tensile creep of VT1-0 commercial titanium in i...
The effect of strain rate, temperature, grain size, and texture on the substructure and mechanical r...
Titanium-based alloys are constantly improved to obtain properties suitable for their use. Improving...