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Mechanical, durability and microstructural characteristics of ultra-high-strength self-compacting concrete incorporating steel fibers

机译:含钢纤维的超高强度自密实混凝土的机械,耐久性和微观结构特征

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Few researches are carried out in the Gulf area to study the feasibility of producing UHSC using available local materials with the inclusion of steel fibers, and investigate its properties and durability. Local available materials and the inclusion of steel fibers with different volume fractions are investigated to produce UHSC Different mechanical properties are evaluated (compressive strength and splitting tensile strength). Durability of the concrete in high sulfate and high temperature condition (i.e. resembling Gulf environment) is evaluated. Also, chloride permeability, bulk chloride diffusion and electrical resistivity are evaluated. Test results indicate that local material can produce UHS-FRC. The ductility of the concrete is greatly improved by the incorporation of steel fibers and increases as the fiber volume increases. Chloride permeability, bulk chloride diffusion and electrical resistivity are affected by the volume fraction of steel fibers. The inclusion of steel fibers did not have significant effect on the durability of the concrete in the sulfate environment. Microstructural investigations of UHS-FRC concrete were also performed. The microstructural investigations shed some light on the nature of interfacial bond of fibers and the cement paste and its effect on its mechanical and fracture properties.
机译:在海湾地区很少进行研究来研究使用现有的包括钢纤维在内的当地材料生产UHSC的可行性,并研究其性能和耐久性。研究了当地可用的材料以及不同体积分数的钢纤维的夹杂物,以生产UHSC。对不同的机械性能进行了评估(抗压强度和抗拉强度)。评价了在高硫酸盐和高温条件下(即类似于海湾环境)的混凝土的耐久性。此外,评估了氯化物的渗透性,整体氯化物的扩散和电阻率。测试结果表明,本地物质可以产生UHS-FRC。通过掺入钢纤维,可大大提高混凝土的延展性,并随着纤维体积的增加而增加。氯化物的渗透性,大量的氯化物扩散和电阻率受钢纤维体积分数的影响。钢纤维的夹杂物对硫酸盐环境下混凝土的耐久性没有显着影响。还进行了UHS-FRC混凝土的微观结构研究。微观结构研究为纤维与水泥浆的界面结合的性质及其对机械和断裂性能的影响提供了一些启示。

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