PSI - Issue 11

Alisson Rodrigues de Oliveira Dias et al. / Procedia Structural Integrity 11 (2018) 84–90 Author name / Structural Integrity Procedia 00 (2018) 000 – 000

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References

ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS. NBR NM 45: Determinação da massa unitária e do volume de vazios. Rio de Janeiro, 2006. ASSOCIAÇÃO BRASILEIRADE NORMAS TÉCNICAS NBR NM 46: Agregados - Determinação do material fino que passa através da peneira 75 um, por lavagem. Rio de Janeiro, 2003. ASSOCIAÇÃO BRASILEIRADE NORMAS TÉCNICAS NBR NM 52: Agregado miúdo - Determinação da massa específica e massa específica aparente. Rio de Janeiro, 2009. ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS NBR NM 67: Concreto – Determinação da consistência pelo abatimento do tronco de cone. Rio de Janeiro, 1998. ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS NBR NM 248: Agregados - Determinação da composição granulométrica. Rio de Janeiro, 2003. ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS NBR 5.738: Concreto: Procedimento para moldagem e cura de corpos-de-prova. Rio de Janeiro, 2007. ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS NBR 5.739: Concreto: Ensaio de compressão de corpos-de-prova cilíndricos. Rio de Janeiro, 2007. ASSOCIAÇÃO BRASILEIRADE NORMAS TÉCNICAS NBR 8802. Concreto endurecido – Determinação da velocidade de propagação de onda ultrassônica, Rio de Janeiro, 1994. Bogas, J. A., Gomes, M. G., Gomes, A., 2013. Compressive strength evaluation of structural lightweight concrete by non-destructive ultrasonic pulse velocity method. Ultrasonics 53, 962-972. Carcaño,R. S., Moreno, E. I., 2008. Evaluation of concrete made with crushed limestone aggregate based on ultrasonic pulse velocity. Construction and Building Materials 22, 1225-1231. Georgali, B., Tsakiridis, P. E., 2005. Microstructure of fire-damaged concrete. A case study. Cement & concrete composites 27, 255-259. Haddad, R. H, Shannis, L. G., 2004. Post-fire behavior of bond between high strength pozzolanic concrete and reinforcing steel. Construction and Building Materials 18, 425–435. Husem, M., 2006. The effects of high temperature on compressive and flexural strengths of ordinary and high-performance concrete, Fire Safety Journal 41,155–163. Kim, G., Kim, Y., Lee, T., 2009. Mechanical properties of high-strength concrete subjected to high temperature by stressed test. Transactions of Nonferrous metals society of China 19, 128-133. Kodur, V., 2014. Properties of Concrete at Elevated Temperatures. ISRN Civil Engineering. Vol 2014, Article ID 468510. Kodur, V. R., Raut, N., 2010. Performance of concrete structures under fire hazard: emerging trends. The Indian Concrete Journal. vol. 84, no. 2, pp. 23 – 31. Lin, Y., Hsiao, C., Yang, H., Lin, Y. F., 2011. The effect of post-fire-curing on strength – velocity relationship for nondestructive assessment of fire damaged concrete strength. Fire Safety Journal 46, 178-185. Ma, Q., Guo, R., Zhao, Z., Lin, Z., He, K., 2015. Mechanical properties of concrete at high temperature – A review. Construction and Bulding Materials 93, 371-383. Park, S.; Yim, H. J.; Kwark, H., 2015. Effects of post-fire curing conditions on the restoration of material properties of fire-damaged concrete. Construction and Building Materials 99, 90-98. Pliya, P., Beaucour, A., Nounowé, A., 2011. Contribution of cocktail of polypropylene and steel fibres in improving the behavior of high strength concrete subjected to high temperature. Construction and Building Materials 25, 1926-1934. Poon, C., Azhar, S., Anson, M., Wong, Y., 2001. Strength and durability recovery of fire-damaged concrete after post fire curing, Cement and Concrete Research. V. 31, p. 1307-1318. Poon, C. S., Azhar, S., Anson, M., Wong, Y. L., 2001. Comparison of the strength and durability performance of normal and high-strenght pozzolanic concretes at elevated temperatures. Cement and Concrete Research 31, 1291-1300. Savva, A., Manita, P., Sideris, K. K., 2005. Influence of elevated temperatures on the mechanical properties of blended cement concretes prepared with limestone and siliceous aggregates. Cement and Concrete Composites 27, 239-248. Xiao, J. G., König, G., 2004. Study on concrete at high temperature in China – an overview, Fire Safety Journal 39, 89-103. Yang, H., Lin, Y., Hsiao, C., Liu, J., 2009. Evaluating residual compressive strength of concrete at elevated temperatures using ultrasonic pulse velocity. Fire Safety Journal 44, 121-130. Yiching, L., Chiamen, H., Hsuanchih, Y., Yu-feng, L., 2011. The effect of post-fire-curing on strength – velocity relationship for nondestructive assessment of fire-damaged concrete strength. Fire Safety Journal 46, 178-185.

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