English

Comparative qualification of advanced plasma-facing materials for fusion pilot plants through public- and private-sector experiments in DIII-D

Plasma Physics 2026-07-26 v1 Materials Science

Abstract

A coordinated DIII-D campaign exposed and comparatively assessed 44 advanced plasma-facing materials from 12 institutions, including four public-private fusion partnerships, to support fusion pilot plant wall and divertor material down-selection. Samples were exposed using the Divertor Materials Evaluation System (DiMES) under Ohmic, L-mode, and H-mode conditions with edge-localized modes, at 0.2-2.5 MW m2^{-2} on flush geometries and 10-15 MW m2^{-2} on 10^{\circ} angled geometries. Engineered tungsten architectures retained integrity; long-fiber Wf/W showed the clearest crack-arrest behavior. W-Re and K-doped W showed near-ITER-W-like responses, while additively manufactured W-Ta showed heat-flux-sensitive mass losses of 0.64 mg for the flat sample and 2.19-2.87 mg for angled samples. After irradiation to 0.3 dpa at 550^{\circ}C, neutron-irradiated ITER-grade W retained 2.8 times more deuterium than pristine W, while TiB2_2 showed the lowest D2_2 release in the Ohmic set. VTaHfMo was the most stable refractory multi-principal-element alloy. NbC and (Nb0.5_{0.5}Ta0.5_{0.5})C retained integrity with 0.02-0.03 mg mass loss, whereas ZrC lost 7 mg. CVD SiC retained macroscopic integrity but exhibited an effective Si erosion yield of 0.5, about 5-10 times above prior DIII-D trends. Renewable boron pebble rods underwent controlled recession; 13% of released boron was ionized near the outer strike point and up to 50% was recovered locally. Initial in-situ chromium gross-erosion measurements yielded values of order 10210^{-2}. Together, these results provide cross-material benchmarks for fusion pilot plant down-selection and future AI/ML-assisted plasma-facing-material development.

Keywords

Cite

@article{arxiv.2607.23400,
  title  = {Comparative qualification of advanced plasma-facing materials for fusion pilot plants through public- and private-sector experiments in DIII-D},
  author = {Florian Effenberg and Jonathan D. Coburn and Luca Cappelli and Simon D. Corah and Amoolya Grandhi and Jerome Guterl and Charlie Hirst and Mike Jackson and Dylan A. Kohler and Rob Kolasinski and Erick Martinez-Loran and Ria Meston and Lauren Nuckols and Angelica Ottaviano and Zana Popovic and Sergey Tsurkan and Tessa Van Volkenburg and Daniel Velazquez and Aaliyah Zuniga and Arunodaya Bhattacharya and Jose Boedo and Kent Christian and Giacomo Dose and Eric Hollmann and Mykola Ialovega and Florian M. Laggner and Samara Levine and Xavier Navarro and Andrew Shone and Lance L. Snead and David Sprouster and Jason Trelewicz and Jayson Barr and Ryan Hood and Charlie Lasnier and Yan-Ru Lin and Vincent Mazon and Jun Ren and Gilson Ronchi and Dmitry Rudakov and Dinh Truong and Cedric Tsui and Shawn Zamperini and Weicheng Zhong and Tyler Abrams and Anthony W. Leonard and Roberto Maurizio},
  journal= {arXiv preprint arXiv:2607.23400},
  year   = {2026}
}

Comments

20 pages, 16 figures, 3 tables