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Journal of the Korea Concrete Institute

J Korea Inst. Struct. Maint. Insp.
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  • Korea Citation Index (KCI)

References

1 
Al-Shamasneh, A. R., Mahmoodzadeh, A., Kewalramani, M., Alghamdi, A., Alnahas, J., Sulaiman, M., Ghazouani, N., Albaijan, I. (2025), Hybrid machine learning models for predicting the tensile strength of reinforced concrete incorporating nano-engineered and sustainable supplementary cementitious materials, Scientific Reports, 15(1), 35805DOI
2 
D'Alessandro, A., Rallini, M., Ubertini, F., Materazzi, A. L., Kenny, J. M. (2016), Investigations on Scalable Fabrication Procedures for Self-Sensing Carbon Nanotube Cement-Matrix Composites for SHM Applications, Cement and Concrete Composites, Elsevier, 65, 200-213.DOI
3 
Dan Foresee, F., Hagan, M. T. (1997), Gauss-Newton approximation to bayesian learning, IEEE International Conference on Neural Networks - Conference Proceedings, 3, 1930-1935.Google Search
4 
Dong, W., Li, W., Tao, Z., Wang, K. (2019), Piezoresistive Properties of Cement-Based Sensors: Review and Perspective, Construction and Building Materials, Elsevier, 203, 146-163.DOI
5 
Dong, W., Li, W., Wang, K., Han, B., Sheng, D., Shah, S. P. (2020), Investigation on Physicochemical and Piezoresistive Properties of Smart MWCNT/Cementitious Composite Exposed to Elevated Temperatures, Cement and Concrete Composites, Elsevier, 112, 103675DOI
6 
Dong, W., Huang, Y., Lehane, B., Ma, G. (2022), An Artificial Intelligence-Based Conductivity Prediction and Feature Analysis of Carbon Fiber Reinforced Cementitious Composite for Non-Destructive Structural Health Monitoring, Engineering Structures, Elsevier, 266, 114578DOI
7 
Han, B., Yu, X., Ou, J. (2014), Self-Sensing Concrete in Smart Structures, 1-385., Oxford, UK: Butterworth-HeinemannGoogle Search
8 
Hubert, M., Vandervieren, E. (2008), An adjusted boxplot for skewed distributions, Computational Statistics & Data Analysis, 52(12), 5186-5201.DOI
9 
Jang, A. Y., Lim, S. H., Kim, D. H., Yun, H. D., Lee, G. C., Seo, S. Y. (2020), Strain-Detecting Properties of Hybrid PE and Steel Fibers Reinforced Cement Composite (Hy-FRCC) with Multi-Walled Carbon Nanotube (MWCNT) under Repeated Compression, Results in Physics, Elsevier, 18, 103199DOI
10 
Jia, P., Sun, M., Lin, Y., Yan, J. (2025), Machine Learning-Based Prediction of Piezoresistive Performance, Feature Analysis, and Mix Optimization for Self-Sensing Cement-Based Composites with Carbon Black, Carbon Nanotubes, and Carbon Fiber, Construction and Building Materials, Elsevier, 495, 143686DOI
11 
Lee, S. J., You, I., Zi, G., Yoo, D. Y. (2017), Experimental Investigation of the Piezoresistive Properties of Cement Composites with Hybrid Carbon Fibers and Nanotubes, Sensors, MDPI, 17(11), 2516DOI
12 
Luo, J., Zhang, C., Duan, Z., Wang, B., Li, Q., Chung, K. L., Zhang, J., Chen, S. (2018), Influences of Multi-Walled Carbon Nanotube (MCNT) Fraction, Moisture, Stress/Strain Level on the Electrical Properties of MCNT Cement-Based Composites, Sensors and Actuators A: Physical, Elsevier, 280, 413-421.DOI
13 
Mardani, M., Hosseini Lavassani, S. H., Adresi, M., Rashidi, A. (2022), Piezoresistivity and Mechanical Properties of Self-Sensing CNT Cementitious Nanocomposites: Optimizing the Effects of CNT Dispersion and Surfactants, Construction and Building Materials, Elsevier, 349, 128127DOI
14 
Nguyen, D. L., Phan, T. D. (2025), Self-Sensing Capacity of Strain-Hardening Fiber-Reinforced Cementitious Composites: Machine Learning Prediction and Experimental Validation, Asian Journal of Civil Engineering, Springer, 26(4), 1801-1818.DOI
15 
Sun, M. Q., Liew, R. J. Y., Zhang, M. H., Li, W. (2014), Development of Cement-Based Strain Sensor for Health Monitoring of Ultra High Strength Concrete, Construction and Building Materials, Elsevier, 65, 630-637.DOI
16 
Vlachakis, C., Su, Y. F., Rengaraju, S., Wang, X., Milone, G., Taj, K., Al-Tabbaa, A. (2025), Self-Sensing Concrete: A Data-Driven Approach to Comprehensive Analysis and Review, International Materials Reviews, Taylor & Francis, 71(3)DOI
17 
Wang, D., Zhang, Z., Zhu, Y., Yu, K., Ning, C., Jia, X., Hui, Y., Li, Y., Chen, Q., Banthia, N., Jiang, Z. (2025), Next-Generation Green Intelligent Self-Sensing Geopolymer Composites for Enhancing Construction Security and Sustainability: A Review, Composites Part B: Engineering, Elsevier, 295, 112191DOI
18 
Woo, J. S., Jin, A. H., Yun, H. D., Yu, J., Bae, J. H., Kim, S. W., Seo, S. Y., Lee, G. C., Hong, S., Kim, K. S., Han, S. (2025), Effects of Ultrasonication on Electrical and Self-Sensing Properties for Fiber-Reinforced Cementitious Composites Containing MWCNTs, Journal of Materials Research and Technology, Elsevier, 34, 1509-1528.DOI