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- W4288045710 abstract "This work aims to investigate the influence of polypropylene fibers of a single length (12 mm) on the mechanical, microstructural, and thermal behavior of standard strength concrete. The development of the residual mechanical properties with the temperatures (room temperature, 175 °C, 200 °C, 400 °C, and 600 °C) was studied in the resistance parameters and compared with the standard concrete. The improvement in void level with temperature was studied and compared to adding fiber to strength concrete to prevent spalling at high temperatures. The plasticity of concrete has been analyzed in terms of victimization, the characteristic residual length of concrete that increases with increasing temperature. The water/cement ratio of 0.4 was used to check cured compressive strength, bulk density, and flexural strength. In the same way, the robustness characteristics of resistance to the chimney were carried out. In addition, microstructural properties of FESEM, XRD, FTIR, and Raman spectrographic analyzes were performed on unused concrete samples containing separate polypropene as additional material. The C-H-S gels evenly; in short, Bakelite plastic concrete can replace river sand up to 5 % without significantly affecting the mechanical or durability properties. As a result, when Bakelite plastic is used above, the reliance on fine aggregate (river sand) to produce concrete for structural members is reduced. The asbestos cement exposed to the 200 °C chimney collapse showed a reduction in mass drop. They have reinforced compressive strength in recycled concrete mixer 0.35 % fibers subjected to thermal aggression up to 200 °C. Chimney bursting at 400 °C to 600 °C, the strength was quickly reduced by voids. The expected optimum value for fiber-reinforced concrete discovered through the comprehensive results provides an advanced understanding of fiber reinforced concrete and all advances in experimental building material performance." @default.
- W4288045710 created "2022-07-27" @default.
- W4288045710 creator A5055182621 @default.
- W4288045710 date "2022-01-01" @default.
- W4288045710 modified "2023-09-28" @default.
- W4288045710 title "Temperature effect and microstructural enactment on recycled fiber concrete" @default.
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- W4288045710 doi "https://doi.org/10.1016/j.matpr.2022.07.225" @default.
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