DOI: 10.20868/upm.thesis.52181
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Estudio del comportamiento frente al fuego del hormigón en masa con adición de nanofibras de carbono (CNFS) y su comparación con hormigones sin adición y con otras adiciones

Abstract: At present, nanotechnology aims to be a tool for the generation of advance in engineering, and it is therefore an important factor for the development of society. Nanomaterials are contributing substantially to the making of new technologies, for that reason, to know their interaction with concrete and its reaction to fire is very important. The negative consequences that result from

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Cited by 2 publications
(2 citation statements)
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References 30 publications
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“…For the preparation of the test samples, indications from UNE EN 13279-2 standard were followed, as well as instructions from studies conducted by Serrano [26] and Piña [27]. Panels measuring 320 ± 1.5 mm x 150 ± 1.5 mm with a thickness of 15 mm were prepared, having a water/plaster mass ratio of 0.8.…”
Section: Test Sample Preparationmentioning
confidence: 99%
“…For the preparation of the test samples, indications from UNE EN 13279-2 standard were followed, as well as instructions from studies conducted by Serrano [26] and Piña [27]. Panels measuring 320 ± 1.5 mm x 150 ± 1.5 mm with a thickness of 15 mm were prepared, having a water/plaster mass ratio of 0.8.…”
Section: Test Sample Preparationmentioning
confidence: 99%
“…Para ello, siguiendo las indicaciones de la investigación de Serrano R. (Serrano Somolinos, 2018), se elaboran probetas a modo de paneles de 320±1,5 mm x 150±1,5 mm y espesor 15 mm y se dejan 7 días en condiciones de laboratorio. Se trasladan al lugar del ensayo y se sitúan sobre una parrilla de 1,00 m x 0,80 m en la que se colocan 20 kg de madera de pino troceada como carga de fuego, cantidad estimada para un ensayo de 30 minutos.…”
Section: Ensayo Real a Fuego Directounclassified