A face-centered cubic (FCC) phase in electro-polished specimens for transmission electron microscopy of commercially pure titanium has sometimes been reported. Here, a combination of atom-probe tomography, scanning transmission electron microscopy and low-loss electron energy loss spectroscopy is employed to study both the crystal structural and chemical composition of this FCC phase. Our results prove that the FCC phase is actually a TiHx (x>1) hydride, and not a new allotrope of Ti, in agreement with previous reports. The formation of the hydride is discussed
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
A hexagonal close-packed (HCP) to face-centered cubic (FCC) phase transition has been observed in fr...
Investigation of FCC Ti in TEM Foils Formed Under Three Separate ConditionsbyRachel E. TraylorDoctor...
Pure Ti traditionally exhibits the hexagonal closed packed (HCP) crystallographic structure under am...
Ti and Ti‐based alloys have high affinity for hydrogen and can easily adsorb large amounts of hydrog...
Hydrogen pick-up leading to hydride formation is often observed in commercially pure Ti (CP-Ti) and ...
Combining transmission electron microscopes and density functional theory calculations, we report th...
Ti and its alloys have a high affinity for hydrogen and are typical hydride formers. Ti-hydride are ...
Ti and its alloys have a high affinity for hydrogen and are typical hydride formers. Ti-hydride are ...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
A hexagonal close-packed (HCP) to face-centered cubic (FCC) phase transition has been observed in fr...
Investigation of FCC Ti in TEM Foils Formed Under Three Separate ConditionsbyRachel E. TraylorDoctor...
Pure Ti traditionally exhibits the hexagonal closed packed (HCP) crystallographic structure under am...
Ti and Ti‐based alloys have high affinity for hydrogen and can easily adsorb large amounts of hydrog...
Hydrogen pick-up leading to hydride formation is often observed in commercially pure Ti (CP-Ti) and ...
Combining transmission electron microscopes and density functional theory calculations, we report th...
Ti and its alloys have a high affinity for hydrogen and are typical hydride formers. Ti-hydride are ...
Ti and its alloys have a high affinity for hydrogen and are typical hydride formers. Ti-hydride are ...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...
International audienceThe microstructural evolution induced by hydrogen in the commercially pure Ti5...