prof. dr. ir. Kim Verbeken
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Evaluation of the responsible hydrogen embrittlement mechanism in martensitic steels by advanced microstructural characterization
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Physical slag properties via a combined experimental–modelling approach
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A mechanistic interpretation for the initiation and propagation of hydrogen induced and assisted cracks
(2023) -
Internal friction study of hydrogen interactions in duplex stainless steel
(2023) -
In-situ microcantilever bending of titanium revealing hydrogen-dislocation interactions
(2023) -
- Journal Article
- A1
- open access
Effect of microstructure on the hydrogen embrittlement, diffusion, and uptake of dual-phase low alloy steels with varying ferrite-martensite ratios
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Towards circularity in steel industry : a joint journey between industry and universities along multiple TRL levels
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Investigation of the influence of Nb addition on the corrosion product formation and hydrogen uptake of tempered martensitic steel in H2S environment
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Fractographic study of quasi-static tensile tested, electrochemically hydrogen charged X70 pipeline steels
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Investigating the role of pH on the corrosion rate of construction steel in artificial seawater