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Development of W-coating with functionally graded W/EUROFER-layers for protection of First-Wall materials

机译:开发具有功能梯度W / EUROFER层的W涂层,用于保护首层材料

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摘要

To protect First-Wall components, made of reduced activation ferritic martensitic steel, against the plasma of future fusion reactors, tungsten coatings are a feasible option. The difference in coefficient of thermal expansion between the coating and the steel substrate can be compensated using functionally graded material layers. Such layers were successfully produced by vacuum plasma spraying. This technique reduces, however, the hardness of the substrate surface near zone. Modified spraying parameters moderate the hardness loss. The parameters may, though, affect also the layer bonding toughness which is evaluated in this work by four point bending tests. Furthermore, the layers behavior on First-Wall Mock-ups and under different thermal loads is investigated by finite element simulations.
机译:为了保护由还原活化铁素体马氏体钢制成的第一壁组件免受未来聚变反应堆的等离子体的影响,钨涂层是一种可行的选择。涂层和钢基材之间的热膨胀系数差异可以使用功能渐变材料层来补偿。通过真空等离子喷涂成功地生产了这样的层。然而,该技术降低了基板表面附近区域的硬度。修改后的喷涂参数可减轻硬度损失。但是,这些参数也可能影响层粘合韧性,这是通过四点弯曲测试评估的。此外,通过有限元模拟研究了在第一个墙模型和不同热负荷下的层行为。

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