Fatigue Loading of thin-walled, segmental UHPFRC Structures and its Influence on the Capacity of their Keyed Dry Joints

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Original languageEnglish
Title of host publicationProceedings of 6th International Symposium on Ultra-High Performance Concrete and High Performance Building Materials for Sustainable Construction
Pages185-188
Publication statusPublished - 6 Mar 2024

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Fatigue Loading of thin-walled, segmental UHPFRC Structures and its Influence on the Capacity of their Keyed Dry Joints. / Joachim, Linus; Wilkening, Marvin; Schmidt, Boso et al.
Proceedings of 6th International Symposium on Ultra-High Performance Concrete and High Performance Building Materials for Sustainable Construction. 2024. p. 185-188.

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Joachim, L, Wilkening, M, Schmidt, B & Oettel, V 2024, Fatigue Loading of thin-walled, segmental UHPFRC Structures and its Influence on the Capacity of their Keyed Dry Joints. in Proceedings of 6th International Symposium on Ultra-High Performance Concrete and High Performance Building Materials for Sustainable Construction. pp. 185-188.
Joachim, L., Wilkening, M., Schmidt, B., & Oettel, V. (2024). Fatigue Loading of thin-walled, segmental UHPFRC Structures and its Influence on the Capacity of their Keyed Dry Joints. In Proceedings of 6th International Symposium on Ultra-High Performance Concrete and High Performance Building Materials for Sustainable Construction (pp. 185-188)
Joachim L, Wilkening M, Schmidt B, Oettel V. Fatigue Loading of thin-walled, segmental UHPFRC Structures and its Influence on the Capacity of their Keyed Dry Joints. In Proceedings of 6th International Symposium on Ultra-High Performance Concrete and High Performance Building Materials for Sustainable Construction. 2024. p. 185-188
Joachim, Linus ; Wilkening, Marvin ; Schmidt, Boso et al. / Fatigue Loading of thin-walled, segmental UHPFRC Structures and its Influence on the Capacity of their Keyed Dry Joints. Proceedings of 6th International Symposium on Ultra-High Performance Concrete and High Performance Building Materials for Sustainable Construction. 2024. pp. 185-188
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