Follow
Rostislav Chudoba
Rostislav Chudoba
Professor, RWTH Aachen, Institute of Structural Concrete
Verified email at rwth-aachen.de
Title
Cited by
Cited by
Year
Thin‐walled shell structures made of textile‐reinforced concrete: part I: structural design and construction
A Scholzen, R Chudoba, J Hegger
Structural Concrete 16 (1), 106-114, 2015
1662015
Stochastic modeling of multi-filament yarns: II. Random properties over the length and size effect
M Vořechovský, R Chudoba
International journal of Solids and Structures 43 (3-4), 435-458, 2006
1222006
Stochastic modeling of multi-filament yarns. I. Random properties within the cross-section and size effect
R Chudoba, M Vořechovský, M Konrad
International Journal of Solids and Structures 43 (3-4), 413-434, 2006
1162006
Structural behavior of a lightweight, textile-reinforced concrete barrel vault shell
E Sharei, A Scholzen, J Hegger, R Chudoba
Composite Structures 171, 505-514, 2017
882017
Shells made of textile reinforced concrete–applications in Germany
S Scheerer, R Chudoba, MP Garibaldi, M Curbach
Journal of the international association for shell and spatial structures 58 …, 2017
822017
Thin‐walled shell structures made of textile‐reinforced concrete: Part II: Experimental characterization, ultimate limit state assessment and numerical simulation
A Scholzen, R Chudoba, J Hegger
Structural Concrete 16 (1), 115-124, 2015
662015
Dünnwandiges Schalentragwerk aus textilbewehrtem Beton: Entwurf, Bemessung und baupraktische Umsetzung
A Scholzen, R Chudoba, J Hegger
Beton‐und Stahlbetonbau 107 (11), 767-776, 2012
612012
Automatic adaptive generation of a coupled finite element/element-free Galerkin discretization
H Karutz, R Chudoba, WB Krätzig
Finite elements in analysis and design 38 (11), 1075-1091, 2002
512002
An incremental inverse analysis procedure for identification of bond-slip laws in composites applied to textile reinforced concrete
Y Li, J Bielak, J Hegger, R Chudoba
Composites Part B: Engineering 137, 111-122, 2018
502018
Microplane fatigue model MS1 for plain concrete under compression with damage evolution driven by cumulative inelastic shear strain
A Baktheer, M Aguilar, R Chudoba
International Journal of Plasticity 143, 102950, 2021
492021
ORICRETE: Modeling support for design and manufacturing of folded concrete structures
R Chudoba, J Van Der Woerd, M Schmerl, J Hegger
Advances in engineering software 72, 119-127, 2014
462014
Enhanced assessment rule for concrete fatigue under compression considering the nonlinear effect of loading sequence
A Baktheer, J Hegger, R Chudoba
International Journal of Fatigue 126, 130-142, 2019
432019
Pressure-sensitive bond fatigue model with damage evolution driven by cumulative slip: Thermodynamic formulation and applications to steel-and FRP-concrete bond
A Baktheer, R Chudoba
International Journal of Fatigue 113, 277-289, 2018
412018
Effect of twist, fineness, loading rate and length on tensile behavior of multifilament yarns (a multivariate study)
R Chudoba, M Vořechovský, V Eckers, T Gries
Textile research journal 77 (11), 880-891, 2007
402007
A strain-hardening microplane damage model for thin-walled textile-reinforced concrete shells, calibration procedure, and experimental validation
R Chudoba, E Sharei, A Scholzen
Composite Structures 152, 913-928, 2016
382016
Brittle matrix composites with heterogeneous reinforcement: Multi-scale model of a crack bridge with rigid matrix
R Rypl, R Chudoba, A Scholzen, M Vořechovský
Composites science and technology 89, 98-109, 2013
382013
Experimental and theoretical evidence for the load sequence effect in the compressive fatigue behavior of concrete
A Baktheer, R Chudoba
Materials and Structures 54 (2), 82, 2021
372021
Monitoring concept for the propagation of compressive fatigue in externally prestressed concrete beams using digital image correlation and fiber optic sensors
H Becks, A Baktheer, S Marx, M Classen, J Hegger, R Chudoba
Fatigue & Fracture of Engineering Materials & Structures 46 (2), 514-526, 2023
312023
Classification and evaluation of phenomenological numerical models for concrete fatigue behavior under compression
A Baktheer, R Chudoba
Construction and Building Materials 221, 661-677, 2019
312019
Using Python for scientific computing: Efficient and flexible evaluation of the statistical characteristics of functions with multivariate random inputs
R Chudoba, V Sadílek, R Rypl, M Vořechovský
Computer Physics Communications 184 (2), 414-427, 2013
302013
The system can't perform the operation now. Try again later.
Articles 1–20