Stress-relieved pure tungsten received three damage levels (0.10, 0.25 and 0.50 dpa) by self-tungsten ion beam irradiation at room temperature. Positron annihilation spectroscopy showed the formation of mono-vacancies and vacancy clusters after ion beam exposure. In the first irradiation step (0–0.10 dpa) some splitting up of large vacancy clusters occurred which became more numerous. For increasing dose to 0.25 dpa, growth of the vacancy clusters was seen. At 0.50 dpa a change in the defect formation seems to occur leading to a saturation in the lifetime signal obtained from the positrons. Nano-indentation on the cross-sections showed a flat damage depth distribution profile. The nano-indentation hardness increased for increasing damage do...
In-situ irradiations with 150 keV W+ ions have been performed on W and W-5wt.% (Re; Ta; V) alloys in...
Vacancy-type defects created by helium implantation in tungsten and their impact on the nano-hardnes...
The spallation material at ESS is pure tungsten, which is cooled by gaseous helium flow. To study th...
International audienceVacancy defects in tungsten induced by self-irradiation were characterized by ...
International audienceSelf-ion irradiation of pure tungsten with 2 MeV W ions provides a way of simu...
International audienceVacancy defects in tungsten induced by self-ion irradiation were characterized...
AbstractThe irradiation hardening and microstructures of pure W and W–3%Re for up to 5.0 dpa by self...
The irradiation hardening and microstructures of pure W and W–3%Re for up to 5.0 dpa by self-ion irr...
The displacement damage induced by primary recoils of fusion neutrons in tungsten and alloys has bee...
In our earlier work [1] microstructural evolution in tungsten under self-ion irradiation was investi...
Tungsten is one of the most promising materials for high temperature components in any future nuclea...
To understand the deuterium (D) bulk retention behavior in plasma facing materials under reactor-rel...
Reliable and accurate knowledge of the physical properties of elementary point defects is crucial fo...
Displacement damage, through heavy ion irradiation was studied on two tungsten grades (coarse graine...
Combining spatially resolved x-ray Laue diffraction with atomic-scale simulations, we observe how io...
In-situ irradiations with 150 keV W+ ions have been performed on W and W-5wt.% (Re; Ta; V) alloys in...
Vacancy-type defects created by helium implantation in tungsten and their impact on the nano-hardnes...
The spallation material at ESS is pure tungsten, which is cooled by gaseous helium flow. To study th...
International audienceVacancy defects in tungsten induced by self-irradiation were characterized by ...
International audienceSelf-ion irradiation of pure tungsten with 2 MeV W ions provides a way of simu...
International audienceVacancy defects in tungsten induced by self-ion irradiation were characterized...
AbstractThe irradiation hardening and microstructures of pure W and W–3%Re for up to 5.0 dpa by self...
The irradiation hardening and microstructures of pure W and W–3%Re for up to 5.0 dpa by self-ion irr...
The displacement damage induced by primary recoils of fusion neutrons in tungsten and alloys has bee...
In our earlier work [1] microstructural evolution in tungsten under self-ion irradiation was investi...
Tungsten is one of the most promising materials for high temperature components in any future nuclea...
To understand the deuterium (D) bulk retention behavior in plasma facing materials under reactor-rel...
Reliable and accurate knowledge of the physical properties of elementary point defects is crucial fo...
Displacement damage, through heavy ion irradiation was studied on two tungsten grades (coarse graine...
Combining spatially resolved x-ray Laue diffraction with atomic-scale simulations, we observe how io...
In-situ irradiations with 150 keV W+ ions have been performed on W and W-5wt.% (Re; Ta; V) alloys in...
Vacancy-type defects created by helium implantation in tungsten and their impact on the nano-hardnes...
The spallation material at ESS is pure tungsten, which is cooled by gaseous helium flow. To study th...