Tungsten (W) was select for an extensive use in nuclear fusion devices due to its low neutron activation, high melting point and sputtering threshold as well as low hydrogen inventory. Nevertheless, W is brittle at low and moderate temperatures, which results in abnormal thermal stress, component fracture and extra erosion under reactor operation due to inherent thermal cycling events. An attractive way to solve these problems involves the addition of other refractory metals in the W matrix and tantalum (Ta) is a natural candidate. It has a high ductility, toughness and radiation resistance relative to those of W and transmutes to W by high-energy neutron irradiation. Recently, IST proposed the production of W-Ta composite by mechanical syn...
Tantalum carbide-tungsten composites were produced by reaction sintering a mixture of tungsten carbi...
For the next step fusion reactor the use of tungsten is inevitable to suppress erosion and allow ope...
Nuclear fusion is a potential source for producing unlimited environment-friendly energy. Tungsten (...
Tungsten (W) was select for an extensive use in nuclear fusion devices due to its low neutron activa...
Tungsten (W) and its alloys are very promising materials for producing plasma-facing components (PFC...
Tungsten is the major candidate material for the armour of plasma facing components in future fusion...
Material issues pose a significant challenge for future fusion reactors like DEMO. When using materi...
Tungsten (W) and its alloys are very promising materials for producing plasma-facing components (PFC...
This chapter provides a comprehensive knowledge about the potential role of tungsten-based composite...
The main requirements of tungsten materials for structural divertor applications comprise properties...
The main requirements of tungsten materials for structural divertor applications comprise properties...
Currently nuclear fusion remains a major target for future energy production. However, numerous key ...
In future fusion reactors, tungsten (W) is considered as the main candidate material for plasma-faci...
1 A novel concept to improve the toughness of tungsten Tungsten is due to its refractory nature, exc...
In future fusion reactors, tungsten (W) is considered as the main candidate material for plasma-faci...
Tantalum carbide-tungsten composites were produced by reaction sintering a mixture of tungsten carbi...
For the next step fusion reactor the use of tungsten is inevitable to suppress erosion and allow ope...
Nuclear fusion is a potential source for producing unlimited environment-friendly energy. Tungsten (...
Tungsten (W) was select for an extensive use in nuclear fusion devices due to its low neutron activa...
Tungsten (W) and its alloys are very promising materials for producing plasma-facing components (PFC...
Tungsten is the major candidate material for the armour of plasma facing components in future fusion...
Material issues pose a significant challenge for future fusion reactors like DEMO. When using materi...
Tungsten (W) and its alloys are very promising materials for producing plasma-facing components (PFC...
This chapter provides a comprehensive knowledge about the potential role of tungsten-based composite...
The main requirements of tungsten materials for structural divertor applications comprise properties...
The main requirements of tungsten materials for structural divertor applications comprise properties...
Currently nuclear fusion remains a major target for future energy production. However, numerous key ...
In future fusion reactors, tungsten (W) is considered as the main candidate material for plasma-faci...
1 A novel concept to improve the toughness of tungsten Tungsten is due to its refractory nature, exc...
In future fusion reactors, tungsten (W) is considered as the main candidate material for plasma-faci...
Tantalum carbide-tungsten composites were produced by reaction sintering a mixture of tungsten carbi...
For the next step fusion reactor the use of tungsten is inevitable to suppress erosion and allow ope...
Nuclear fusion is a potential source for producing unlimited environment-friendly energy. Tungsten (...