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Testing of spark plasma sintered porous tungsten under neon glow discharge cleaning conditions in LTX-β

  • C. López Pérez
  • , A. Maan
  • , S. Abe
  • , D. Boyle
  • , A. Dahanayake
  • , C. Jaramillo-Correa
  • , B. E. Koel
  • , R. Majeski
  • , A. Marin
  • , T. Le
  • , M. Nieto-Perez

Research output: Contribution to journalArticlepeer-review

Abstract

This paper demonstrates that tungsten (W) based powder reconstituted Plasma Facing Components (PFCs) can be treated in situ in a fusion reactor to remove W oxide and carbon (C) contamination. Doing so should ease the challenge of using these materials in a Capillary Porous System (CPS) with lithium (Li) by enabling better wetting and less contamination of the Li by the underlying CPS. Most powder reconstituted materials including 3D printed and sintered PFCs suffer from a high surface contamination from oxides and surface C, which complicates their use with liquid Li, a primary PFC candidate. Spark plasma sintered porous W samples were fabricated to be used as a CPS with liquid Li. The samples were characterized in terms of morphology and surface chemistry. Analysis confirms a high C and oxygen (O) contamination. We present the results of exposing this type of CPS to Glow Discharge Cleaning (GDC) cycles in the Lithium Tokamak Experiment-β (LTX-β). The sample was exposed to neon (Ne) GDC in the midplane of the low-field side of LTX-β and analyzed in vacuo with Temperature Programmed Desorption (TPD) and Secondary Ion Mass Spectrometry (SIMS) to investigate the effects the Ne GDC had on the chemical composition of the sample. The combination of Ne GDC with rapid heating as done in TPD was successful in reducing the W oxides and removing the C contamination.

Original languageEnglish (US)
Article number102123
JournalNuclear Materials and Energy
Volume47
DOIs
StatePublished - Jun 2026

All Science Journal Classification (ASJC) codes

  • Nuclear and High Energy Physics
  • Materials Science (miscellaneous)
  • Nuclear Energy and Engineering

Keywords

  • Capillary porous system
  • Glow discharge cleaning
  • In situ cleaning
  • Lithium
  • Plasma Facing Components
  • Plasma material interactions

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