Recent Advances in Testing and Modelling Reinforced Concrete Structures
A special issue of Applied Sciences (ISSN 2076-3417). This special issue belongs to the section "Materials Science and Engineering".
Deadline for manuscript submissions: closed (15 December 2020) | Viewed by 81791
Special Issue Editors
Interests: hybrid structures; reinforced concrete; prestressed concrete; shear & punching shear; steel and concrete composite materials; connections between steel and concrete; strengthening of bridges and infrastructures; carbon/ textile reinforced concrete; fatigue of concrete and composite structures; innovative structural testing methods
Interests: concrete; cohesive fracture; creep; shrinkage; hydration; cross-linking; multi-phase modeling; discrete element modeling
Special Issues, Collections and Topics in MDPI journals
Special Issue Information
Dear Colleagues,
Testing and modeling the structural behavior of reinforced concrete structures is a challenging task that has attracted the attention of researchers for more than 100 years. In the past, models to predict the strength of RC members were mainly formulated as simple empirical expressions derived from results of ordinary standard tests by means of statistical analysis. These simple black-box models neither explain the mechanical background of structural behavior nor can be applied beyond the experimentally covered range (e.g., to new materials or innovative designs).
However, today, we have access to refined experimental and theoretical methods that allow us to gain further insights into the underlying mechanical behavior of RC structures. New testing procedures and high-resolution measurement techniques can contribute to a significant improvement of our knowledge. Based on new findings, researchers can develop advanced mechanical theories (analytical and numerical models) that allow us to analyze and explain all the relevant mechanical processes and to design RC structures for the future.
This Special Issue is therefore dedicated to “Recent Advances in Testing and Modelling Reinforced Concrete Structures”, and it intends to welcome contributions on, but not limited to, the following subjects:
- New testing and characterization techniques for RC members;
- Use of new measuring and analysis procedures (e.g., digital image correlation DIC, fiber-optic strain measurement systems);
- Mechanical models for RC members (e.g., bond, bending, shear, punching);
- Numerical models for RC members (e.g. bond, bending, shear, punching);
- RC members made from new materials (e.g., ultra-high-performance concrete, nonmetallic reinforcement, 3D-printed concrete).
Prof. Dr. Martin Classen
Prof. Dr. Roman Wan-Wendner
Guest Editors
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Keywords
- RC members
- new testing methods
- new measuring and analysis techniques
- mechanical models
- numerical models
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