Caracterizações de pastas de cimento Portland com adições de grafite, óxido de grafeno e nanotubos de carbono
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Universidade Estadual de Ponta Grossa
Abstract
Materials composed of Portland cement matrix, such as mortars and concretes, are
extensively used due to their versatile properties, such as mechanical strengths and
durability, as well as the ease of molding parts into various geometries. As such,
increasing research efforts focus on developing new applications for cementitious
materials, especially with the use of additions. One of the most studied areas is the
development of Portland cement matrices with carbon-based additions, such as
graphite, graphene, and carbon nanotubes. In this context, it is important to deepen
the understanding of the microstructure of Portland cement pastes with the use of
carbon-based additions. The objective of this study was to investigate the influence of
graphite, graphene oxide (GO), and carbon nanotubes (CNT) additions on the
microstructure of hydrated Portland cement paste. For this purpose, 0,01%, 0,03%,
and 0,05% of each addition by mass of cement were used, dispersed in pastes at 7,
28, and 90 days of submerged curing. After the curing period, tests were conducted
for compressive strength, tensile strength, water absorption by immersion, electrical
conductivity, and microstructural characterizations such as XRD, FTIR, Raman, NMR,
and SEM/EDS. For compressive and tensile strengths, it was observed that graphite,
due to its high deformability, could hinder the strengths, whereas GO and CNT showed
more varied results, but with a greater tendency towards stabilization of values
compared to the reference paste. Regarding absorption, no significant variations were
identified, except for samples with graphite at 90 days of curing, which showed a
reduction of 14,4% to 18,0% compared to the reference paste. Electrical conductivity
showed gains at 28 days with the use of the additions, but at 90 days, there was a
reduction in conductivity. With microstructural characterization, considerable
influences of the additions on the formation of hydrated calcium silicate (C-S-H) were
observed. Through Raman spectra, alterations in the proportion of portlandite and
silicates were verified, and through NMR spectra, specific modifications of C-S-H were
identified, optimizing the formation of chains with fewer bridges between oxygen and
silicon (Si-O-Si), reducing the average chain length, and increasing the degree of
hydration. This indicates an increase in the compaction of this phase due to a closer
proximity between calcium silicate lamellae. Thus, it is understood that the results
observed in the literature regarding gains in mechanical strength, especially with the
use of graphene and carbon nanotubes, can be explained not only by the physical
reinforcement of these additions in the cement matrix but also by their influence on
cement hydration mechanisms, mainly on the morphology of C-S-H.
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ALMEIDA, Jadiel Matias de. Caracterizações de pastas de cimento Portland com adições de grafite, óxido de grafeno e nanotubos de carbono. 2024. Dissertação (Mestrado em Engenharia e Ciência de Materiais) - Universidade Estadual de Ponta Grossa, Ponta Grossa, 2024.
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