The 90WMoNiFe alloy facing plasma divertor is a core component in the controllable nuclear fusion device. Its main function is to effectively discharge the heat, particles and impurities in the plasma from the outside of the device, thereby maintaining the purity and purity of the fusion reaction area. Stablize. The divertor is designed to optimize plasma confinement performance while reducing thermal loading and corrosion effects on device materials.
90WMoNiFe alloy has become an ideal material for divertors due to its excellent high temperature resistance, corrosion resistance and radiation resistance. In the fusion reaction, the divertor is subjected to extremely high thermal load and particle flow impact, and 90WMoNiFe alloy can operate stably for a long time, maintaining structural integrity and performance stability.
The working principle of the divertor is mainly to guide the heat and particle flow in the plasma to exit the device along a specific path through its special geometric configuration and magnetic field structure. At the same time, the divertor can also effectively shield impurities from the wall and reduce pollution to the central plasma, thereby maintaining a pure environment for the fusion reaction.
In the controllable nuclear fusion device, the application of 90WMoNiFe alloy to the plasma divertor not only improves the performance and stability of the fusion reaction, but also provides a strong guarantee for the long-term operation and safety of the device. As fusion technology continues to advance, the performance requirements for divertor materials are also increasing. 90WMoNiFe alloy will continue to play an important role in promoting the development of the fusion energy field.
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