A series of nanopillar compression tests were performed on tungsten as a function of temperature using in situ transmission electron microscopy with localized laser heating. Surface oxidation was observed to form on the pillars and grow in thickness with increasing temperature. Deformation between 850 °C and 1120 °C is facilitated by long-range diffusional transport from the tungsten pillar onto adjacent regions of the Y2O3-stabilized ZrO2 indenter. The constraint imposed by the surface oxidation is hypothesized to underly this mechanism for localized plasticity, which is generally the so-called whisker growth mechanism. The results are discussed in context of the tungsten fuzz growth mechanism in He plasma-facing environments. The two proc...
Tungsten oxide (W18O49) nanorods were grown by directly heating tungsten foils covered with potassiu...
The elucidation of spontaneous growth of metal whiskers from metal surfaces is still ongoing, with t...
\u3cp\u3eIn this work, the microstructure evolution in the near-surface of tungsten under hydrogen (...
A series of nanopillar compression tests were performed on tungsten as a function of temperature usi...
Growth of tungsten nano-tendrils (“fuzz”) has been observed for the first time in the divertor regio...
Impact of crystal orientation on the surface morphology of the helium plasma exposed tungsten has be...
The present paper reports the growth and branching mechanism of W18O49 nanowires grown on nanocryst...
Time-modulated helium (He) ion energy (e.g. V_Bias = -50 + 25*sin(2*pi*f_RF*t), f_RF = 13.56 MHz) is...
We observe large-scale surface terraces in tungsten oxidised at high temperature and in high vacuum...
The mechanisms responsible for and controlling the growth of tungsten nano-tendrils (or "fuzz") unde...
Tungsten suboxide W18O49 nanowhiskers is a material of great interest due to its potential high-end ...
Tungsten remains a leading candidate for plasma facing component (PFC) in future fusion devices. Thi...
The morphology changes induced by low energy deuterium ions on tungsten surfaces is studied for part...
Due to a lack of direct experimental results, the detailed mechanisms that govern the blistering beh...
The morphology changes induced by low energy deuterium ions on tungsten surfaces is studied for part...
Tungsten oxide (W18O49) nanorods were grown by directly heating tungsten foils covered with potassiu...
The elucidation of spontaneous growth of metal whiskers from metal surfaces is still ongoing, with t...
\u3cp\u3eIn this work, the microstructure evolution in the near-surface of tungsten under hydrogen (...
A series of nanopillar compression tests were performed on tungsten as a function of temperature usi...
Growth of tungsten nano-tendrils (“fuzz”) has been observed for the first time in the divertor regio...
Impact of crystal orientation on the surface morphology of the helium plasma exposed tungsten has be...
The present paper reports the growth and branching mechanism of W18O49 nanowires grown on nanocryst...
Time-modulated helium (He) ion energy (e.g. V_Bias = -50 + 25*sin(2*pi*f_RF*t), f_RF = 13.56 MHz) is...
We observe large-scale surface terraces in tungsten oxidised at high temperature and in high vacuum...
The mechanisms responsible for and controlling the growth of tungsten nano-tendrils (or "fuzz") unde...
Tungsten suboxide W18O49 nanowhiskers is a material of great interest due to its potential high-end ...
Tungsten remains a leading candidate for plasma facing component (PFC) in future fusion devices. Thi...
The morphology changes induced by low energy deuterium ions on tungsten surfaces is studied for part...
Due to a lack of direct experimental results, the detailed mechanisms that govern the blistering beh...
The morphology changes induced by low energy deuterium ions on tungsten surfaces is studied for part...
Tungsten oxide (W18O49) nanorods were grown by directly heating tungsten foils covered with potassiu...
The elucidation of spontaneous growth of metal whiskers from metal surfaces is still ongoing, with t...
\u3cp\u3eIn this work, the microstructure evolution in the near-surface of tungsten under hydrogen (...