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Enhanced XRF Methods for Investigating the Erosion-Resistant Functional Coatings

机译:增强的XRF方法用于研究耐腐蚀功能涂层

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The development of erosion-resistant functional materials usable as plasma facing first wall components (PFC) is crucial for increasing the lifetime of future fusion reactors. Generally, PFCs have to be quality checked and characterized regarding their composition, before integrating them into the fusion reactor vessel. Enhanced X-ray fluorescence (XRF) methods represent an effective alternative to conventional analysis methods for the characterization of refractive metallic coatings on large areas of fusion materials. We have developed and applied XRF methods as fast and robust methods for the characterization of the thickness and composition uniformity of complex functional coatings. These coatings consist of tungsten included in multilayer configuration and deposited on low or high Z substrates. We have further developed customized calibration protocols for quantifying the element composition and layer thickness of each investigated sample. The calibration protocols are based on a combination of standard samples measurements, Monte Carlo simulations, and fundamental parameter theoretical calculations. The calibrated results are discussed considering a selection of relevant PFC samples. The deposition uniformity was successfully investigated for different PFC-relevant tiles and lamella shaped samples with W layers below and over the W L-line saturation thickness. Also, the 2D thickness mapping capability of the XRF method was demonstrated by studying the plasma post-erosion pattern.
机译:耐腐蚀功能材料可用作等离子面对第一壁组件(PFC)的开发对于延长未来聚变反应堆的使用寿命至关重要。通常,在将PFC集成到聚变反应堆容器之前,必须对其质量进行质量检查并对其成分进行表征。增强的X射线荧光(XRF)方法代表了常规分析方法的有效替代方法,用于表征大面积融合材料上的折射金属涂层。我们已经开发并应用了XRF方法,作为表征复杂功能涂层厚度和组成均匀性的快速而可靠的方法。这些涂层由多层结构的钨组成,并沉积在低Z或高Z基材上。我们进一步开发了定制的校准方案,用于量化每个研究样品的元素组成和层厚。校准协议基于标准样品测量,蒙特卡洛模拟和基本参数理论计算的组合。考虑选择相关的PFC样品来讨论校准结果。成功地研究了W线以下和W L线饱和厚度以上的W层不同的PFC相关瓷砖和薄片状样品的沉积均匀性。此外,通过研究等离子体腐蚀后的图形证明了XRF方法的二维厚度映射能力。

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