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Title: D retention in e-beam powder-bed fused (3-D printed) tungsten exposed to high-flux deuterium plasma in Pisces-RF

Journal Article · · Nuclear Materials and Energy

Sponsoring Organization:
USDOE
Grant/Contract Number:
SC0022528
OSTI ID:
2317687
Journal Information:
Nuclear Materials and Energy, Journal Name: Nuclear Materials and Energy Vol. 39 Journal Issue: C; ISSN 2352-1791
Publisher:
ElsevierCopyright Statement
Country of Publication:
Netherlands
Language:
English

References (25)

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Implications of PMI and wall material choice on fusion reactor tritium self-sufficiency journal January 2019
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Retention in tungsten resulting from extremely high fluence plasma exposure journal December 2016
Analysis of laser-induced microcracking in tungsten under additive manufacturing conditions: Experiment and simulation journal August 2020
Effect of He on D retention in W exposed to low-energy, high-fluence (D, He, Ar) mixture plasmas journal August 2011
An overview of modern metal additive manufacturing technology journal December 2022
Thermal diffusivity of tungsten irradiated with protons up to 5.8 dpa journal October 2018
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Advanced manufacturing—A transformative enabling capability for fusion journal November 2018
Microstructure and Elevated Temperature Flexure Testing of Tungsten Produced by Electron Beam Additive Manufacturing journal August 2023
Helium induced nanoscopic morphology on tungsten under fusion relevant plasma conditions journal January 2008

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