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Unger Jörg

Information

ORCID
0000-0003-0035-0951
First Contribution
2022-06-29
Last Contribution
2026-03-09
Number Contributions
8
Number Citations
10

Persons This Author Cites the Most

  1. Bos Freek (7)
  2. Wolfs Robert (6)
  3. Mechtcherine Viktor (5)
  4. de Schutter Geert (5)
  5. van Zijl Gideon (5)

Persons This Author Is Cited Most By

  1. Buswell Richard (1)
  2. Jamhiri Babak (1)
  3. Lanteri Federico (1)
  4. Salet Theo (1)
  5. Wolfs Robert (1)


  1. Rehman Saif, Robens-Radermacher Annika, Unger Jörg, Wolfs Robert (2026-03)
    Assessing Structural Failure in Extrusion-Based 3D Concrete Printing Using a Plasticity Model with Non-Linear Hardening
  2. Robens-Radermacher Annika, Schmidt Wolfram, Unger Jörg, Mezhov Alexander (2026-01)
    Characterization of Temperature Influence on the Structural Build-Up of 3D Printed Concrete
  3. Robens-Radermacher Annika, Kujath Cezary, Bos Freek, Mechtcherine Viktor et al. (2025-06)
    Design and Implementation of a Database System for Querying, Sharing, and Analyzing Experimental Data:
    Mechanical Properties of 3D Printed Concrete
  4. He Yuxiang, Robens-Radermacher Annika, Noda Sakiko, Wolf Christoph et al. (2024-11)
    Automated Workflows for Concrete Additive Manufacturing for Design, Optimization, and Fabrication of Parametrized Elements
  5. Mezhov Alexander, Robens-Radermacher Annika, Unger Jörg, Schmidt Wolfram (2024-09)
    Effect of the Ambient Temperature on the Structural Build-Up of 3D Printed Concrete:
    Experimental and Modelling Study
  6. Wolf Christoph, Robens-Radermacher Annika, Unger Jörg (2024-09)
    Optimization Framework for Large-Scale Powder-Bed 3D Printed Concrete Structures Under Various Constraints
  7. Robens-Radermacher Annika, Unger Jörg, Mezhov Alexander, Schmidt Wolfram (2023-07)
    Temperature-Dependent Modelling Approach for Early-Age Behavior of Printable Mortars
  8. Mezhov Alexander, Robens-Radermacher Annika, Zhang Kun, Kühne Hans-Carsten et al. (2022-06)
    Temperature Impact on the Structural Build-Up of Cementitious Materials:
    Experimental and Modelling Study