Uso de polímeros superabsorventes em compostos a base de cimento: uma análise bibliométrica

Autores

DOI:

https://doi.org/10.33448/rsd-v10i14.21818

Palavras-chave:

SAP; Polímero superabsorvente; Concreto; Argamassa; Análise bibliométrica.

Resumo

Os polímeros superabsorventes (SAP) mostram-se promissores no ramo da engenharia quando adicionados em compositos cimentícios. Recentemente, muitos estudos vêm abordando o emprego desses materiais como alternativa para o controle de manifestações patológicas recorrentes, principalmente a retração no estágio endurecido. Esse trabalho apresenta uma revisão bibliométrica nas bases de dados da Scopus e Web of Science acerca do mesmo, com o objetivo de facilitar a localização de estudos relevantes para futuras pesquisas nessa área. Foi realizada uma análise utilizando o software RStudio onde obteve-se os dados de quantidade de publicações, principais autores e periódicos, palavras-chave mais usada e países que mais publicam além de análises de acoplamento bibliográfico e cocitação. Neste contexto, pode-se ressaltar que os autores que mais publicam são De Belie, Snoeck e Liu J., em contrapartida os mais citados são Jensen, Schrofl e Snoeck, respectivamente. O Brasil, embora esteja entre os quinze países que mais publicam, ele não está entre os que mais são citados, evidenciando uma deficiência dos estudos. No total, foram encontrados 343 artigos na base de dados da Scopus e 369 na Web of Science.

Referências

Al-Hubboubi, S., Al-Attar, T., Al-Badry, H., Abood, S., Mohammed, R., & Haddhood, B. (2018). Performance of super-absorbent polymer as an internal curing agent for self-compacting concrete. MATEC Web of Conferences, 162(5), 3–7. https://doi.org/10.1051/matecconf/201816202023

Bentz, B. Y. D. P., Lura, P., & Roberts, J. W. (2005). Mixture Proportioning for Internal Curing. February, 35–40. https://concrete.nist.gov/~bentz/Mixpropfin/CI2702Bentz.pdf

Esteves, L. P. (2011). Superabsorbent polymers: On their interaction with water and pore fluid. Cement and Concrete Composites, 33(7), 717–724. https://doi.org/10.1016/j.cemconcomp.2011.04.006

Garfield, E. (2001). From Bibliographic Coupling to Co-Citation Analysis via Algorithmic Historio-Bibliography: A Citationist‟ s Tribute to Belver C. Griffith. Drexel University, 45. http://garfield.library.upenn.edu/papers/drexelbelvergriffith92001.pdf

Grácio, M. C. C. (2016). Acoplamento bibliográfico e análise de cocitação: revisão teórico-conceitual. Encontros Bibli: Revista Eletrônica de Biblioteconomia e Ciência Da Informação, 21(47), 82. https://doi.org/10.5007/1518-2924.2016v21n47p82

Guo, Y., Zhang, P., Ding, H., & Le, C. (2020). Experimental study on the permeability of SAP modified concrete. Materials, 13(15), 1–15. https://doi.org/10.3390/ma13153368

Hasholt, M. T., Jensen, O. M., Kovler, K., & Zhutovsky, S. (2012). Can superabsorent polymers mitigate autogenous shrinkage of internally cured concrete without compromising the strength? Construction and Building Materials, 31, 226–230. https://doi.org/10.1016/j.conbuildmat.2011.12.062

Jensen, O.M., & Hansen, P. F. (2001). Water-entrained cement-based materials - I. Principles and theoretical background. Cement and Concrete Research, 31(4), 647–654. https://doi.org/10.1016/S0008-8846(01)00463-X

Jensen, Ole Mejlhede, & Hansen, P. F. (2002). Water-entrained cement-based materials. Cement and Concrete Research, 32(6), 973–978. https://doi.org/10.1016/S0008-8846(02)00737-8

Jensen, Ole Mejlhede, & Lura, P. (2006). Techniques and materials for internal water curing of concrete. Materials and Structures/Materiaux et Constructions, 39(9), 817–825. https://doi.org/10.1617/s11527-006-9136-6

Justs, J., Wyrzykowski, M., Bajare, D., & Lura, P. (2015). Internal curing by superabsorbent polymers in ultra-high performance concrete. Cement and Concrete Research, 76, 82–90. https://doi.org/https://doi.org/10.1016/j.cemconres.2015.05.005

Lee, H. X. D., Wong, H. S., & Buenfeld, N. R. (2010). Potential of superabsorbent polymer for self-sealing cracks in concrete. Advances in Applied Ceramics, 109(5), 296–302. https://doi.org/10.1179/174367609X459559

Manzano, M. A. R., da Silva, E. F., Lopes, A. N. M., & Filho, R. D. T. (2021). Actuating mechanism of superabsorbent polymers as internal curing agents to mitigate autogenous shrinkage in high strength concrete (Hsc) – state of the art . Revista Materia, 26(2). https://doi.org/10.1590/S1517-707620210002.1256

Mechtcherine, V., Gorges, M., Schroefl, C., Assmann, A., Brameshuber, W., Ribeiro, A. B., Cusson, D., Custódio, J., Da Silva, E. F., Ichimiya, K., Ye, G., & Zhutovsky, S. (2014). Effect of internal curing by using superabsorbent polymers (SAP) on autogenous shrinkage and other properties of a high-performance fine-grained concrete: Results of a RILEM round-robin test. Materials and Structures/Materiaux et Constructions, 47(3), 541–562. https://doi.org/10.1617/s11527-013-0078-5

Mechtcherine, V., Snoeck, D., Schröfl, C., De Belie, N., Klemm, A. J., Ichimiya, K., Moon, J., Wyrzykowski, M., Lura, P., Toropovs, N., Reinhardt, H. W., & Falikman, V. (2018). Testing superabsorbent polymer (SAP) sorption properties prior to implementation in concrete: results of a RILEM Round-Robin Test. Materials and Structures/Materiaux et Constructions, 51(1). https://doi.org/10.1617/s11527-018-1149-4

Mechtcherine, Viktor, Secrieru, E., & Schröfl, C. (2015). Effect of superabsorbent polymers (SAPs) on rheological properties of fresh cement-based mortars — Development of yield stress and plastic viscosity over time. Cement and Concrete Research, 67, 52–65. https://doi.org/https://doi.org/10.1016/j.cemconres.2014.07.003

Ribeiro, V. A. dos S., Werdine, D., Barbosa, L. F., Oliveira, A. F., Barbosa, A. M., Silva, L. R. R., & Ribeiro, L. H. (2021). Investigação das propriedades físicas e mecânicas do concreto convencional com substituição parcial da areia pelas fibras de bambu. Research, Society and Development, 10(13), e268101321092. https://doi.org/10.33448/rsd-v10i13.21092

Rodrigues, F., Valle, S., Cesar, P., Gabriela, M., & Ranieri, A. (2022). Use of recycled aggregates from civil construction in self- compacting mortar. Rev. IBRACON Estrut. Mater, 15(1), 1–13.

Sandison, A. (1989). Documentation note: thinking about citation analysis. Journal of Documentation, 45(1), 59–64. https://doi.org/10.1108/eb026839

Schroefl, C., Mechtcherine, V., Gorges, M., Schröfl, C., Mechtcherine, V., Gorges, M., Schrofl, C., Mechtcherine, V., & Gorges, M. (2012). Relation between the molecular structure and the efficiency of superabsorbent polymers (SAP) as concrete admixture to mitigate autogenous shrinkage. Cement and Concrete Research, 42(6), 865–873. https://doi.org/10.1016/j.cemconres.2012.03.011

Schröfl, C., Mechtcherine, V., & Gorges, M. (2012). Relation between the molecular structure and the efficiency of superabsorbent polymers (SAP) as concrete admixture to mitigate autogenous shrinkage. Cement and Concrete Research, 42(6), 865–873. https://doi.org/10.1016/j.cemconres.2012.03.011

Shim, Y., Hong, G., & Choi, S. (2018). Autogenous healing of early-age cementitious materials incorporating superabsorbent polymers exposed to wet/dry cycles. Materials, 11(12). https://doi.org/10.3390/ma11122476

Snoeck, D., & De Belie, N. (2016). Repeated autogenous healing in strain-hardening cementitious composites by using superabsorbent polymers. Journal of Materials in Civil Engineering, 28(1). https://doi.org/10.1061/(ASCE)MT.1943-5533.0001360

Snoeck, D., Jensen, O. M., & De Belie, N. (2015). The influence of superabsorbent polymers on the autogenous shrinkage properties of cement pastes with supplementary cementitious materials. Cement and Concrete Research, 74, 59–67. https://doi.org/10.1016/j.cemconres.2015.03.020

Snoeck, D., Steuperaert, S., Van Tittelboom, K., Dubruel, P., & De Belie, N. (2012a). Visualization of water penetration in cementitious materials with superabsorbent polymers by means of neutron radiography. Cement and Concrete Research, 42(8), 1113–1121. https://doi.org/https://doi.org/10.1016/j.cemconres.2012.05.005

Snoeck, D., Steuperaert, S., Van Tittelboom, K., Dubruel, P., & De Belie, N. (2012b). Visualization of water penetration in cementitious materials with superabsorbent polymers by means of neutron radiography. Cement and Concrete Research, 42(8), 1113–1121. https://doi.org/10.1016/j.cemconres.2012.05.005

Snoeck, D., Van Tittelboom, K., Steuperaert, S., Dubruel, P., & De Belie, N. (2014). Self-healing cementitious materials by the combination of microfibres and superabsorbent polymers. Journal of Intelligent Material Systems and Structures, 25(1), 13–24. https://doi.org/10.1177/1045389X12438623

Treinta, F. T., Filho, J. R. F., Sant’Anna, A. P., & Rabelo, L. M. (1983). Bibliometric studies of research collaboration: A review. Journal of Information Science, 6(1), 33–38. https://doi.org/10.1177/016555158300600105

Treinta, F. T., Filho, J. R. F., Sant’Anna, A. P., & Rabelo, L. M. (2014). Methodology of bibliographical research using multicriteria decision-making methods. Producao, 24(3), 508–520. https://doi.org/10.1590/S0103-65132013005000078

Vanti, N. A. P. (2002). Da bibliometria à webometria: uma exploração conceitual dos mecanismos utilizados para medir o registro da informação e a difusão do conhecimento. Ciência Da Informação, 31(2), 152–162. https://doi.org/10.3233/WOR-192975

Wyrzykowski, M., Lura, P., Pesavento, F., & Gawin, D. (2011). Modeling of internal curing in maturing mortar. Cement and Concrete Research, 41(12), 1349–1356. https://doi.org/10.1016/j.cemconres.2011.04.013

Downloads

Publicado

30/10/2021

Como Citar

SOUZA, M. H. B. de .; GONÇALVES, P. C. .; SILVA, L. R. R. .; MELO, M. de L. N. M. .; SANTOS, V. C. dos . Uso de polímeros superabsorventes em compostos a base de cimento: uma análise bibliométrica. Research, Society and Development, [S. l.], v. 10, n. 14, p. e171101421818, 2021. DOI: 10.33448/rsd-v10i14.21818. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/21818. Acesso em: 30 jun. 2024.

Edição

Seção

Engenharias