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Dive into the research topics where Kamil Hodicky is active.

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Featured researches published by Kamil Hodicky.


Journal of civil engineering and architecture | 2014

Wedge Splitting Test and Inverse Analysis on Fracture Behaviour of Fiber Reinforced and Regular High Performance Concretes

Kamil Hodicky; Thomas Hulin; Jacob Wittrup Schmidt; Henrik Stang

The fracture behaviour of three fiber reinforced and regular HPC (high performance concretes) is presented in this paper. Two mixes are based on optimization of HPC whereas the third mix was a commercial mix developed by CONTEC ApS (Denmark). The wedge splitting test setup with 48 cubical specimens was used experimentally and the cracked non-linear hinge model based on the fictitious crack model was applied for the interpretation of the results. The stress-crack opening relationships were extracted by using inverse analysis algorithm for various multi-linear softening curves. This showed that the refinement of the softening curves reflects in improved accuracy of the WST (wedge splitting test) simulation in comparison with bi-linear softening curves with acceptable increase of computational time. Furthermore, the fracture mechanics parameters such as COD (crack opening displacement), fracture energy and characteristic length were experimentally determined. Experiments were performed at 1, 3, 7 and 28 days. Fracture energy, Gf, was found to increase with age, while the characteristic length, Lch, was found to decrease.


Journal of Composites for Construction | 2015

Experimental and Numerical Investigation of the FRP Shear Mechanism for Concrete Sandwich Panels

Kamil Hodicky; G. Sopal; Sami Rizkalla; Thomas Hulin; Henrik Stang


Fire Technology | 2016

Experimental Studies on the Fire Behaviour of High Performance Concrete Thin Plates

Thomas Hulin; Cristian Maluk; Luke Bisby; Kamil Hodicky; Jacob Wittrup Schmidt; Henrik Stang


4th Asia-Pacific Conference on FRP in Structures: Towards sustainable Infrastructure with FRP composites | 2013

Structural performance of new thin-walled concrete sandwich panel system reinforced with bfrp shear connectors

Kamil Hodicky; Thomas Hulin; Jacob Wittrup Schmidt; Henrik Stang


Journal of Composites for Construction | 2016

Influence of Basalt FRP Mesh Reinforcement on High-Performance Concrete Thin Plates at High Temperatures

Thomas Hulin; Dan H. Lauridsen; Kamil Hodicky; Jacob Wittrup Schmidt; Henrik Stang


5th International Conference on Structural Engineering, Mechanics and Computation | 2013

A model for spalling of HPC thin plates exposed to fire

Thomas Hulin; Kamil Hodicky; Jacob Wittrup Schmidt; Jens Henrik Nielsen; Henrik Stang


Materials and Structures | 2016

Experimental investigations of sandwich panels using high performance concrete thin plates exposed to fire

Thomas Hulin; Kamil Hodicky; Jacob Wittrup Schmidt; Henrik Stang


Structural and Multidisciplinary Optimization | 2015

Cost optimization of load carrying thin-walled precast high performance concrete sandwich panels

Kamil Hodicky; Sanne Hansen; Thomas Hulin; Jacob Wittrup Schmidt; Henrik Stang


8th International Conference on Fracture Mechanics of Concrete and Concrete Structures | 2013

Assesment risk of fracture in thin-walled fiber reinforced and regular High Performance Concretes sandwich elements

Kamil Hodicky; Thomas Hulin; Jacob Wittrup Schmidt; Henrik Stang


4th Asia-Pacific Conference on FRP in Structures (APFIS 2013), Melbourne, Australia, 11-13 December 2013 / Riadh Al-Mahaidi, Scott T. Smith, Yu Bai and Xiao-Ling Zhao (eds.) | 2013

Fire performance of basalt FRP mesh reinforced HPC thin plates

Thomas Hulin; Kamil Hodicky; Jacob Wittrup Schmidt; Jens Henrik Nielsen; Henrik Stang

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Henrik Stang

Technical University of Denmark

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Thomas Hulin

Technical University of Denmark

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Jacob Wittrup Schmidt

Technical University of Denmark

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Jens Henrik Nielsen

Technical University of Denmark

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Sanne Hansen

Technical University of Denmark

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Sami Rizkalla

North Carolina State University

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Cristian Maluk

University of Queensland

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Luke Bisby

University of Edinburgh

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