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Furtado
Matsumoto, T. ., Kubota, M. ., Matsuolza, S. ., Ginet, P. ., Furtado, J. ., & Barbier, F. . (2017). Threshold stress intensity factor for hydrogen-assisted cracking of CR-MO steel used as stationary storage buffer of a hydrogen refueling station. International Journal of Hydrogen Energy, 42, 7422-7428. https://doi.org/10.1016/j.ijhydene.2016.05.124
Macadre, A. ., Artamonov, M. ., Matsuoka, S. ., & Furtado, J. . (2011). Effects of hydrogen pressure and test frequency on fatigue crack growth properties of Ni-Cr-Mo steel candidate for a storage cylinder of a 70 MPa hydrogen filling station. Engineering Fracture Mechanics, 78, 3196-3211. https://doi.org/10.1016/j.engfracmech.2011.09.007
Briottet, L. ., Moro, I. ., Escot, M. ., Furtado, J. ., Sallais, D. ., Dey, R. ., … Solin, J. . (2013). Material Testing and Design Recommendations for Components Exposed to Hydrogen Enhanced Fatigue - The Mathryce Project.
Matsumoto, T. ., Kubota, M. ., Matsuoka, S. ., Ginet, P. ., Furtado, J. ., & Barbier, F. . (2015). Threshold Stress Intensity Factor for Hydrogen Assisted Cracking of Cr-Mo Steel Used as Stationary Storage Buffer.
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