Predicting the Tensile Properties of Carbon FRCM Using a LASSO Model

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Abstract

The use of Fibre Reinforced Cementitious Matrix (FRCM) for structural retrofitting requires prior assessment of the composite’s mechanical properties, particularly its tensile stress–strain response. This paper presents a LASSO regression model applied to 107 uniaxial tensile tests on Carbon FRCM in order to investigate the impact of both the material and testing parameters on FRCM performance. A highly effective LASSO regression model was trained using k-fold validation, resulting in concise and comprehensible models. Within the testing parameters, both the gripping system and load–speed ratio significantly affected the performance. A substantial impact on ultimate values was found for the load–speed ratio. From the material-related parameters, the most influential was the textile coating in terms of strength and the existence of bilinear or trilinear behaviour. It was also concluded that the combination of textile and matrix properties influenced the stress–strain response at all stages, with high-performance mortars resulting in better textile-to-matrix interaction.

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Rodríguez-Marcos, M., Villanueva-Llaurado, P., Fernández-Gómez, J., Abellán-García, J., & Sisa-Camargo, A. (2024). Predicting the Tensile Properties of Carbon FRCM Using a LASSO Model. Fibers, 12(12). https://doi.org/10.3390/fib12120109

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