An alternative solution for tungsten as a plasma facing material could be the use of W heavy alloys as they are produced commercially by several companies. They consist of up to 97% W and Ni/Fe (or Ni/Cu) admixtures, they are readily machinable and considerably cheaper than bulk tungsten. Their major drawbacks in view of the application in fusion experiments are the rather low melting temperature and their magnetic properties (in case of a Ni/Fe binder phase). In a first step W heavy alloys from two manufacturers were investigated concerning their thermal and magnetic properties and subjected to screening tests and cyclic loading in the high heat flux test facility GLADIS with up to 20 MW m−2 and surface temperatures of up to 2200 °C, showi...
AbstractMaterials for the plasma facing components of future fusion reactors will be subjected to co...
Tungsten (W) is a material which has the highest melting point of 3422 ℃ among metals. Therefore whe...
ASDEX Upgrade was operated with about 6400 s plasma discharge during the scientific program in 2007/...
During reactor operation the plasma-facing materials have to fulfil very complex and sometimes contr...
The tungsten programme in ASDEX Upgrade is pursued towards a full high-Z device. The spectroscopic d...
Tungsten is being considered as a potential plasma-facing material for future fusion devices, primar...
Tungsten is considered as the most promising material for plasma facing components (PFCs) in the mag...
Abstract. The material for plasma facing components of a future fusion device is still not decided. ...
Tungsten is the major candidate material for the armour of plasma facing components in future fusion...
A strong effort has been put into tungsten investigations at the Garching tokamak ASDEX Upgrade. The...
Materials for the plasma facing components of future fusion reactors will be subjected to complex lo...
Tungsten materials are candidates for plasma-facing components for the International Thermonuclear E...
Tungsten materials are candidates for plasma-facing components for the International Thermonuclear E...
Tungsten is being considered as a potential plasma-facing material for future fusion devices, primar...
In nuclear fusion devices the surfaces directly facing the plasma are irradiated with high energy fl...
AbstractMaterials for the plasma facing components of future fusion reactors will be subjected to co...
Tungsten (W) is a material which has the highest melting point of 3422 ℃ among metals. Therefore whe...
ASDEX Upgrade was operated with about 6400 s plasma discharge during the scientific program in 2007/...
During reactor operation the plasma-facing materials have to fulfil very complex and sometimes contr...
The tungsten programme in ASDEX Upgrade is pursued towards a full high-Z device. The spectroscopic d...
Tungsten is being considered as a potential plasma-facing material for future fusion devices, primar...
Tungsten is considered as the most promising material for plasma facing components (PFCs) in the mag...
Abstract. The material for plasma facing components of a future fusion device is still not decided. ...
Tungsten is the major candidate material for the armour of plasma facing components in future fusion...
A strong effort has been put into tungsten investigations at the Garching tokamak ASDEX Upgrade. The...
Materials for the plasma facing components of future fusion reactors will be subjected to complex lo...
Tungsten materials are candidates for plasma-facing components for the International Thermonuclear E...
Tungsten materials are candidates for plasma-facing components for the International Thermonuclear E...
Tungsten is being considered as a potential plasma-facing material for future fusion devices, primar...
In nuclear fusion devices the surfaces directly facing the plasma are irradiated with high energy fl...
AbstractMaterials for the plasma facing components of future fusion reactors will be subjected to co...
Tungsten (W) is a material which has the highest melting point of 3422 ℃ among metals. Therefore whe...
ASDEX Upgrade was operated with about 6400 s plasma discharge during the scientific program in 2007/...