4.5 Article Proceedings Paper

Smart Tungsten-based Alloys for a First Wall of DEMO

Journal

FUSION ENGINEERING AND DESIGN
Volume 159, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.fusengdes.2020.111742

Keywords

DEMO; Passive safety; Tungsten alloys; Suppressed oxidation; Plasma-facing material; Yttrium

Funding

  1. Euratom research and training programme 2014-2018 [633053]
  2. Euratom research and training programme 2019-2020 [633053]
  3. European Commission through the Erasmus Mundus International Doctoral College in Fusion Science and Engineering (FUSION-DC)
  4. [5018/H2020Euratom/2019/2]
  5. EPSRC [EP/T012250/1] Funding Source: UKRI

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During an accident with loss-of-coolant and air ingress in DEMO, the temperature of tungsten first wall cladding may exceed 1000 degrees C and remain for months leading to tungsten oxidation. The radioactive tungsten oxide can be mobilized to the environment at rates of 10-150 kg per hour. Smart tungsten-based alloys are under development to address this issue. Alloys are aimed to function as pure tungsten during regular plasma operation of DEMO. During an accident, alloying elements will create a protective layer, suppressing release of W oxide. Bulk smart alloys were developed by using mechanical alloying and field-assisted sintering technology. The mechanical alloying process was optimized leading to an increased powder production by at least 40 %. Smart alloys and tungsten were tested under a variety of DEMO-relevant plasma conditions. Both materials demonstrated similar sputtering resistance to deuterium plasma. Under accident conditions, alloys feature a 40-fold reduction of W release compared to that of pure tungsten.

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