To overcome the intrinsic brittleness of tungsten (W), a tungsten fiber-reinforced tungsten-composite material (Wf/W) is under development. The composite addresses the brittleness of W by extrinsic toughening through the introduction of energy dissipation mechanisms. These mechanisms allow the reduction of stress peaks and thus improve the materials resistance against crack growth. They do not rely on the intrinsinc material properties such as ductility. By utilizing powder metallurgy (PM) one could benefit from available industrialized approaches for composite production and alloying routes. In this contribution the PM method of hot isostatic pressing (HIP) is used to produce Wf/W samples containing W fibers coated with an Er2O3 interface....
The development of sustainable energy systems for the current and future generationsis one of the mo...
In tungsten fibre-reinforced tungsten composites (Wf/W) the brittleness problem of tungsten is solve...
Material issues pose a significant challenge for future fusion reactors like DEMO. When using materi...
To overcome the intrinsic brittleness of tungsten (W), a tungsten fiber-reinforced tungsten-composit...
AbstractTo overcome the intrinsic brittleness of tungsten (W), a tungsten fiber-reinforced tungsten-...
To overcome the intrinsic brittleness of tungsten (W), a tungsten fiber-reinforced tungsten-composit...
In future fusion reactors, tungsten (W) is considered as the main candidate material for plasma-faci...
Tungsten features a unique combination of properties which makes it a candidate for the use as a pla...
Tungsten is the major candidate material for the armour of plasma facing components in future fusion...
For the first wall of a fusion reactor unique challenges on materials in extreme environments requir...
To overcome the brittleness of tungsten, tungsten fiber-reinforced tungsten composites (Wf/W) have b...
For the first wall of a fusion reactor unique challenges on materials in extreme environments requir...
For future fusion reactors, tungsten (W) is currently the main candidate for the application as plas...
High strength and creep resistance also at high temperature, combined with a high thermal conductivi...
Due to a unique property combination, tungsten is a promising candidate for highly loaded areas in a...
The development of sustainable energy systems for the current and future generationsis one of the mo...
In tungsten fibre-reinforced tungsten composites (Wf/W) the brittleness problem of tungsten is solve...
Material issues pose a significant challenge for future fusion reactors like DEMO. When using materi...
To overcome the intrinsic brittleness of tungsten (W), a tungsten fiber-reinforced tungsten-composit...
AbstractTo overcome the intrinsic brittleness of tungsten (W), a tungsten fiber-reinforced tungsten-...
To overcome the intrinsic brittleness of tungsten (W), a tungsten fiber-reinforced tungsten-composit...
In future fusion reactors, tungsten (W) is considered as the main candidate material for plasma-faci...
Tungsten features a unique combination of properties which makes it a candidate for the use as a pla...
Tungsten is the major candidate material for the armour of plasma facing components in future fusion...
For the first wall of a fusion reactor unique challenges on materials in extreme environments requir...
To overcome the brittleness of tungsten, tungsten fiber-reinforced tungsten composites (Wf/W) have b...
For the first wall of a fusion reactor unique challenges on materials in extreme environments requir...
For future fusion reactors, tungsten (W) is currently the main candidate for the application as plas...
High strength and creep resistance also at high temperature, combined with a high thermal conductivi...
Due to a unique property combination, tungsten is a promising candidate for highly loaded areas in a...
The development of sustainable energy systems for the current and future generationsis one of the mo...
In tungsten fibre-reinforced tungsten composites (Wf/W) the brittleness problem of tungsten is solve...
Material issues pose a significant challenge for future fusion reactors like DEMO. When using materi...