Publikasjoner
- A void-based framework for predicting hydrogen embrittlement
- The Interplay of Mean Stress and Material Anisotropy on Fatigue Mechanisms in a Simulated Recycled 6082 Al Alloy With Varying Trace Elements Les publikasjonen
- Novel Fatigue Damage Accumulation Rules for Aluminum-Welded Details of Suspension Bridges Under Variable-Amplitude Loading
- Influence of prior corrosion on fatigue behaviour in a simulated recycled 6082 Al-alloy Les publikasjonen
- Viability of laser-based welding of T-joints made from 5xxx aluminium alloys
- A study on the influence of impurity content on fatigue endurance in a 6082 Al-alloy Les publikasjonen
- Experimental determination of equivalent hydrogen gas pressure from electrochemical hydrogen charging
- Assessing fracture toughness of vintage and modern X65 pipeline steels under in situ electrochemical hydrogen charging using advanced testing methodology Les publikasjonen
- A novel framework for assessing the fracture toughness through the wall thickness of hydrogen pipelines Les publikasjonen
- Safe pipelines for hydrogen transport Les publikasjonen
Annen formidling
- MECHANICAL BEHAVIOUR OF 316L AND AL6082 ALLOYS IN HYDROGEN GAS ENVIRONMENT: FEASIBILITY AND PERFORMANCE EVALUATION FOR HYDROGEN BARRIER APPLICATIONS
- Metal barriers against hydrogen embrittlement
- Hydrogen related structural integrity challenges in subsea natural gas and hydrogen gas transport
- influence of Service-Induced Degradation on Fatigue Performance of Structural Steel from Decommissioned Ships towards potential upcycling
- Hvor lenge holder sokkelens infrastruktur? | Tu.no
- Structural integrity research on repurposed Norwegian natural gas offshore pipelines for hydrogen gas transport – overview and recent results.
- Metal barriers against hydrogen embrittlement
- INVESTIGATION ON HYDROGEN CRACK GROWTH RESISTANCE OF X65 VINTAGE GIRTH WELD STEEL UNDER GASEOUS HYDROGEN EXPOSURE
- Material and structural integrity assessment for safe Nordic hydrogen transportation infrastructure
- Estimation of fatigue life after prior corrosion using a Murakami-based approach in a simulated recycled 6082 Al-alloy