4.7 Article

Textile Reinforced Mortars (TRM) tensile behavior after high temperature exposure

期刊

CONSTRUCTION AND BUILDING MATERIALS
卷 328, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.conbuildmat.2022.127116

关键词

TRM; FRCM; High-temperature; Tensile strength; Non-destructive testing

资金

  1. Mapei Spain S.A. - Spanish Ministry of Science, Innovation and Universities [RTI2018-101148-B-100]

向作者/读者索取更多资源

This study analyzes the fire performance of different commercial Textile Reinforced Mortars (TRM) systems and finds that their mechanical properties are severely compromised at temperatures ranging from 400 to 600 degrees Celsius. Therefore, depending on their specific application, these systems may require additional protection.
Although one of the main advantages of Textile Reinforced Mortars (TRM) is their non-combustible character, their behavior against fire or high temperatures has not been sufficiently studied at present. This work analyzes the behavior of different commercial systems containing inorganic mortars and fabric reinforcements based on glass, carbon and basalt fibers, subjected to different temperature levels. To characterize the mechanical response of the different systems, non-destructive tests have been carried out to determine the dynamic modulus of elasticity of the different materials, and subsequent destructive tests to determine their strength and stress-strain relationship. For this purpose, the TRM coupons have been subjected to uniaxial tensile tests and the deformations have been monitored using LVDT (Linear Variable Displacement Transducer) sensors and DIC (Digital Image Correlation), in order to evaluate cracking patterns and failure modes. The results show, in general terms, that the mechanical capacity of these materials is seriously compromised at temperatures in the order of 400 to 600 degrees C, which can easily be reached during a fire inside a building. Therefore, it can be concluded that although these systems are erroneously perceived as fire resistant in many cases, they may require additional protection depending on the specific use for which they are intended.

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