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Critical heat flux loading experiments on CVD-W coating in the TEXTOR tokamak

机译:TEXTOR托卡马克中CVD-W涂层的临界热通量加载实验

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摘要

A copper block coated with 0.2 mm layer of CVD-W was exposed to high heat fluxes in the edge plasma of the TEXTOR tokamak. The coating showed good performance in general, however, the coating was destroyed during the critical heat flux loading at an estimated peak power density of 28MW/m~2. This destruction process was first initiated by the cracking of the CVD-W layer due to the large difference in thermal expansion between W and Cu. Molten Cu emerged through the cracks leaving cavities beneath the CVD-W layer. The formed cavities reduced the heat conduction from the CVD-W layer to the Cu block, and the CVD-W layer was damaged further due to the overheating during plasma loads. To avoid this coating failure, it is necessary to keep the temperature at the interface reasonably low and to release thermal stresses by castellation and/or adopting a functionally graded interlayer.
机译:镀有0.2 mm CVD-W层的铜块在TEXTOR托卡马克的边缘等离子体中暴露于高热通量下。涂层通常表现出良好的性能,但是,在临界热通量加载期间,涂层被破坏,估计峰值功率密度为28MW / m〜2。由于W和Cu之间的热膨胀差异很大,这种破坏过程首先是由CVD-W层的破裂引起的。熔融的铜通过裂纹出现,并在CVD-W层下方留下空腔。形成的空腔减少了从CVD-W层到Cu块的热传导,并且由于等离子负载期间的过热,进一步损坏了CVD-W层。为避免这种涂层失效,必须保持界面温度合理较低,并通过and形和/或采用功能渐变的中间层来释放热应力。

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