What Are Applications of 90WMoNiFe Alloy in Fully Superconducting Tokamak Nuclear Fusion Experimental Devices?

The application of 90WMoNiFe alloy in the fully superconducting tokamak nuclear fusion experimental device is mainly reflected in its material as a key component.

First of all, the fully superconducting tokamak nuclear fusion experimental device will produce high-temperature plasma during operation. These plasmas place extremely high requirements on the materials of the components in contact with it. 90WMoNiFe alloy is used to manufacture the first wall and divertor facing the plasma due to its excellent high temperature resistance. These components directly face high-temperature plasma and need to withstand extremely high temperatures and strong particle flow impacts. The excellent properties of 90WMoNiFe alloy ensure their stability and durability.

Secondly, 90WMoNiFe alloy is also used to manufacture thermal structural components. The fully superconducting tokamak nuclear fusion experimental device will generate a large amount of heat during operation, and this heat needs to be effectively conducted and dissipated through thermal structural components. 90WMoNiFe alloy’s good thermal conductivity and thermal stability make it an ideal choice for manufacturing these parts.

In addition, because nuclear fusion reactions produce neutrons and other radiation, 90WMoNiFe alloys are also used for neutron shielding and radiation protection. Its high density and good radiation protection performance can effectively reduce the potential harm of radiation to equipment and personnel.

In summary, 90WMoNiFe alloy plays an important role in the fully superconducting tokamak nuclear fusion experimental device. Its high temperature resistance, thermal conductivity, radiation resistance and other characteristics ensure the stable operation of the device and the success of the experiment. However,

Specific material applications may vary depending on the design and operating conditions of the experimental setup. Therefore, in practical applications, selection and adjustment need to be made according to specific circumstances.

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