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Modified self-healing cementitious materials based on epoxy and calcium nitrate microencapsulation.
Fahimeh Farshi Azhar1, Aylin Ahmadinia1, Alireza Mohammadjafari Sadeghi2
1Applied Polymer Research Laboratory, Department of Chemistry, Faculty of Sciences, Azarbaijan Shahid Madani University, Tabriz, Iran.
This study developed microcapsules containing epoxy and calcium nitrate to effectively heal micro-cracks in cementitious materials, restoring mechanical properties and enhancing durability.
Area of Science:
- Materials Science
- Civil Engineering
- Nanotechnology
Background:
- Cementitious materials are prone to micro-cracking, compromising their mechanical integrity and durability.
- Effective self-healing systems are crucial for extending the service life of concrete structures.
Purpose of the Study:
- To develop and utilize microencapsulated healing agents for self-healing cementitious materials.
- To investigate the effectiveness of microcapsules in restoring mechanical properties of cracked concrete.
Main Methods:
- Microencapsulation of epoxy and calcium nitrate within a urea-formaldehyde shell.
- Characterization of microcapsules using FTIR, TGA, DSC, FESEM, and EDX.
- Incorporation of microcapsules (0-6% w/w) into cementitious mortar samples.
- Evaluation of healing efficiency based on mechanical property recovery rates.
Main Results:
- Microcapsules exhibited suitable size (1-100 µm), shell thickness (0.2-0.6 µm), and thermal stability up to 260°C.
- Complete healing of micro-cracks was observed in cementitious samples.
- Mechanical properties recovered to over 100% of their original values.
Conclusions:
- The developed microcapsules effectively seal micro-cracks in cementitious materials.
- The self-healing system significantly improves the durability and mechanical performance of concrete.
- The microcapsules also contribute to enhanced thermal stability of the material.
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