Walallawita, R.; Hinchliff, M.C.; Sediako, D.; Quinn, J.; Chou, V.; Walker, K.; Hill, M.
Evaluating the Effect of Blended and Pure Hydrogen in X60 Pipeline Steel for Low-Pressure Transmission Using Hollow-Specimen Slow-Strain-Rate Tensile Testing. Metals 2024, 14, 1132.
https://doi.org/10.3390/met14101132
AMA Style
Walallawita R, Hinchliff MC, Sediako D, Quinn J, Chou V, Walker K, Hill M.
Evaluating the Effect of Blended and Pure Hydrogen in X60 Pipeline Steel for Low-Pressure Transmission Using Hollow-Specimen Slow-Strain-Rate Tensile Testing. Metals. 2024; 14(10):1132.
https://doi.org/10.3390/met14101132
Chicago/Turabian Style
Walallawita, Rashiga, Matthew C. Hinchliff, Dimitry Sediako, John Quinn, Vincent Chou, Kim Walker, and Matthew Hill.
2024. "Evaluating the Effect of Blended and Pure Hydrogen in X60 Pipeline Steel for Low-Pressure Transmission Using Hollow-Specimen Slow-Strain-Rate Tensile Testing" Metals 14, no. 10: 1132.
https://doi.org/10.3390/met14101132
APA Style
Walallawita, R., Hinchliff, M. C., Sediako, D., Quinn, J., Chou, V., Walker, K., & Hill, M.
(2024). Evaluating the Effect of Blended and Pure Hydrogen in X60 Pipeline Steel for Low-Pressure Transmission Using Hollow-Specimen Slow-Strain-Rate Tensile Testing. Metals, 14(10), 1132.
https://doi.org/10.3390/met14101132