Impact of Element Size on Rebar-Concrete Interface Microstructure Using X-ray Computed Tomography
Milena Kucharska1, Piotr Dybeł1
1Faculty of Civil Engineering and Resource Management, AGH University of Krakow, Al. A. Mickiewicza 30, 30-059 Krakow, Poland.
The microstructure of the steel-concrete interface in self-compacting concrete (SCC) is affected by element size and rebar depth. Deterioration of the interface is linked to proximity to the top surface, not element type.
Area of Science:
- Materials Science
- Civil Engineering
- Construction Materials
Background:
- The steel-concrete interface is critical for reinforced concrete structures.
- Self-compacting concrete (SCC) offers advantages in placement but requires understanding its fresh state behavior.
- The microstructure at the rebar-concrete interface influences bond strength and durability.
Purpose of the Study:
- To investigate the impact of element size on the steel-concrete interface microstructure in SCC.
- To analyze the influence of rebar position and casting method on interface properties.
- To evaluate the relevance of current design standards for bond conditions based on rebar depth.
Main Methods:
- Experiments using deep beam and wall elements cast with SCC.
- X-ray computed tomography (CT) for 3D microstructural analysis of the rebar-concrete interface.
- Analysis of core samples to assess interface characteristics.
Main Results:
- Interface microstructure is influenced by distance from the casting point and vertical position.
- Bleeding, air-pore entrapment, and plastic settlement occurred under top rebars.
- Interface deterioration correlated with distance from the element's top surface, irrespective of element type.
Conclusions:
- The study elucidates fresh state phenomena affecting bond properties in SCC.
- Current standards differentiating bond based on rebar depth may be overly strict.
- Findings provide guidance for reinforced concrete construction and design practices.
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