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Crack-Resistant Cements under Drying: Results from Ring Shrinkage Tests and Multi-Physical Modeling
Vít Šmilauer1, Pavel Reiterman2, Rostislav Šulc3
1Department of Mechanics, Faculty of Civil Engineering, Czech Technical University in Prague, Thákurova 7, 166 29 Prague, Czech Republic.
Cementitious materials prone to drying shrinkage cracks can be made more resistant by using cements with slower strength gain, lower fineness, and higher slag content. Custom-formulated cements significantly improve crack resistance compared to commercial options.
Area of Science:
- Materials Science
- Civil Engineering
- Construction Materials
Background:
- Cementitious materials are susceptible to drying shrinkage, leading to cracking under restraint.
- Cements with slower strength gain generally exhibit enhanced resistance to cracking during external drying.
Purpose of the Study:
- To evaluate the cracking tendency of various cements using the ring shrinkage test.
- To investigate the influence of cement properties (fineness, slag substitution) on crack resistance.
- To propose criteria for crack-resistant cements.
Main Methods:
- Conducted ring shrinkage tests on 25 mortar specimens.
- Utilized 10 commercial cements and 15 custom-formulated cements (including Portland and blended cements with up to 30% slag).
- Employed a hygro-mechanical model to simulate strain evolution and crack formation.
Main Results:
- Restrained ring cracking time increased with lower Blaine fineness and higher slag substitution.
- Proposed upper limits for crack-resistant Portland cements: 2-day compressive strength of 27.7 MPa and Blaine fineness of 290 m²/kg.
- Hygro-mechanical model accurately predicted strain evolution, crack formation, and failure.
Conclusions:
- Custom-formulated cements demonstrated superior crack resistance compared to commercial cements.
- Only 20% of commercial cements met crack-resistant criteria, while 67% of custom cements did.
- Cement properties like fineness and slag content are critical for mitigating drying shrinkage cracking.
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