Chongjie Kang
© Stefan Gröschel
Acting Head of Research Division
NameMr Dr.-Ing. Chongjie Kang
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Technische Universität Dresden - Institute of Concrete Structures
Technische Universität Dresden - Institute of Concrete Structures
Visiting address:
BEY Beyer-Bau, Floor 0, Room E 10 George-Bähr-Str. 1
01069 Dresden
2026
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Design Lineage: The Development of Cantilever Construction for Prestressed Concrete Bridges, 31 Mar 2026, Proceedings of the 7th fib Symposium. 10 p., 10402Research output: Contribution to book/conference proceedings/anthology/report > Conference contribution
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Dynamic response prediction of a long-span arch bridge based on an advanced VMD-LSTM framework and SHM data, 1 Mar 2026, In: Smart materials and structures. 35, 3, 25 p., 035026Electronic (full-text) versionResearch output: Contribution to journal > Research article
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ConvNeXt-DSAN: An efficient unsupervised learning framework for structural damage identification with monitoring data, Feb 2026, In: Measurement. 261, 119951Electronic (full-text) versionResearch output: Contribution to journal > Research article
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Fatigue life evaluation and dynamic growth behavior of spatially coupled multiple fatigue cracks in welded joints of OSDs, Feb 2026, In: Structures. 84, 111010Electronic (full-text) versionResearch output: Contribution to journal > Research article
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Cross-Domain Structural Damage Identification via MMD-Based Transfer Learning: Application to An Experimental Truss Model, 2026Electronic (full-text) versionResearch output: Preprint/documentation/report > Preprint
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Experimental Investigations on Dynamic Effects on Railway Masonry Arch Bridges: A Case Study, 2026, International Masonry Conference 2026. State of the Art in Masonry Research: Proceedings of the 11th International Masonry Conference (IMC 2026), Lübeck, Germany, 12-15 July 2026. Fraunhofer IRB Verlag, p. 523-532Electronic (full-text) versionResearch output: Contribution to book/conference proceedings/anthology/report > Conference contribution
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Generational development of early prestressing systems and their grouting-related implications for existing structures, 2026, Proceedings of the 7th fib Congress: Structural Concrete 2050: Towards Carbon Neutrality, AI Design, and Robotic ConstructionResearch output: Contribution to book/conference proceedings/anthology/report > Conference contribution
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Load testing of historical masonry arch bridges using distributed fiber optic sensors (DFOS), 2026, Structural Concrete 2050: Towards Carbon Neutrality, AI Design, and Robotic ConstructionResearch output: Contribution to book/conference proceedings/anthology/report > Conference contribution
2025
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Prediction of the elastic properties and strength of unidirectional carbon fiber reinforced polymers based on representative volume element simulation, Dec 2025, In: Case Studies in Construction Materials. 23, e04963Electronic (full-text) versionResearch output: Contribution to journal > Research article
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Digital Twin Technologies for Bridge Lifecycle Management - Literature Insights and a Pilot Study on the Nibelungen Bridge, 20 Nov 2025, In: Results in Engineering. 28, 108288Electronic (full-text) versionResearch output: Contribution to journal > Research article