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Published on: January 6, 2023
Crack Evaluation of Concrete Using Mechanochromic Sensor.
Sujeong Pyeon1, Hongseop Kim2, Gyeongcheol Choe2
1Department of Architectural Engineering, Chungnam National University, 99 Daehak-ro, Yuseong-gu, Daejeon 34134, Republic of Korea.
A novel mechanochromic sensor effectively monitors concrete deformation and cracking by detecting discoloration. This sensor maintains functionality in cold environments, with recovery after freeze-thaw cycles, enabling real-time structural health monitoring.
Area of Science:
- Materials Science
- Structural Engineering
- Sensor Technology
Background:
- Concrete structures are susceptible to deformation and cracking, especially in harsh environmental conditions.
- Accurate monitoring of concrete degradation is crucial for structural integrity and safety.
- Existing monitoring methods may have limitations in real-time assessment and environmental resilience.
Purpose of the Study:
- To evaluate the effectiveness of a mechanochromic sensor for monitoring concrete deformation.
- To assess the sensor's performance under various environmental conditions, including low temperatures and freeze-thaw cycles.
- To investigate the sensor's capability in detecting and quantifying cracks in concrete members.
Main Methods:
- Attaching mechanochromic sensors to concrete specimens using Loctite adhesive.
- Applying tensile stress and inducing cracks in concrete beams while recording the process.
- Analyzing image data to correlate sensor discoloration with deformation and crack width.
- Testing sensor performance in low-temperature environments and after freeze-thaw cycles.
Main Results:
- The mechanochromic sensor detected concrete deformation up to 0.01 mm through a discoloration reaction.
- Sensor performance was unaffected by the concrete surface finish.
- The sensor's discoloration ability recovered within 2 hours after a freeze-thaw test at temperatures around 15°C.
- Real-time monitoring of cracks and deformation in concrete beams was achieved using the sensor's discoloration.
Conclusions:
- Mechanochromic sensors offer a viable method for real-time monitoring of concrete deformation and cracking.
- The sensor demonstrates resilience and functionality in cold and winter environments.
- Further research can explore the sensor's potential for precise crack width measurement through naked-eye imaging.
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