ir. Liesbet Deconinck
- ORCID iD
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0000-0001-7461-285X
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Effect of additive manufacturing and subsequent heat and/or surface treatment on the hydrogen embrittlement sensitivity of 316L austenitic stainless steel
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- Conference Paper
- C3
- open access
The hydrogenation mechanism of L-PBF Ti-6Al-4V with different building orientation and surface finish
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Microstructure dependent hydrogen embrittlement in Ti-6Al-4V : an in-situ comparison between the as-built, heat treated laser powder bed fused and conventionally cold rolled alloy
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The mechanism behind the effect of building orientation and surface roughness on hydrogen embrittlement of laser powder bed fused Ti-6Al-4V
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- Journal Article
- A1
- open access
The mechanism of hydride formation during electrochemical hydrogen charging of Ti-6Al-4V
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Design and development of a reinforced tubular electrospun construct for the repair of ruptures of deep flexor tendons
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Hydrogen embrittlement in conventional versus additive manufactured 316L austenitic stainless steel
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Comparison of hydrogen embrittlement in conventionally cold rolled Ti-6Al-4V versus additive manufactured Ti-6Al-4V
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Comparison of hydrogen embrittlement in laser powder bed fused versus conventionally rolled Ti-6Al-4V
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Use of additive manufactured components in hydrogen applications : impact of heat treatment and surface condition on hydrogen embrittlement sensitivity of AM 316L