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Effect of Varying Steel Fiber Content on Strength and Permeability Characteristics of High Strength Concrete with Micro Silica

机译:不同钢纤维含量对微二氧化硅高强度混凝土强度和渗透特性的影响

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摘要

For the efficient and durable design of concrete, the role of fiber-reinforcements with mineral admixtures needs to be properly investigated considering various factors such as contents of fibers and potential supplementary cementitious material. Interactive effects of fibers and mineral admixtures are also needed to be appropriately studied. In this paper, properties of concrete were investigated with individual and combined incorporation of steel fiber (SF) and micro-silica (MS). SF was used at six different levels i.e., low fiber volume (0.05% and 0.1%), medium fiber volume (0.25% and 0.5%) and high fiber volume (1% and 2%). Each volume fraction of SF was investigated with 0%, 5% and 10% MS as by volume of binder. All concrete mixtures were assessed based on the results of important mechanical and permeability tests. The results revealed that varying fiber dosage showed mixed effects on the compressive (compressive strength and elastic modulus) and permeability (water absorption and chloride ion penetration) properties of concrete. Generally, low to medium volume fractions of fibers were useful in advancing the compressive strength and elastic modulus of concrete, whereas high fiber fractions showed detrimental effects on compressive strength and permeability resistance. The addition of MS with SF is not only beneficial to boost the strength properties, but it also improves the interaction between fibers and binder matrix. MS minimizes the negative effects of high fiber doses on the properties of concrete.
机译:对于混凝土的高效和耐用性设计,考虑到纤维和潜在补充水泥材料含量等各种因素,需要适当地研究纤维增强剂与矿物外加混合物的作用。还需要适当研究纤维和矿物混合物的互动效果。本文研究了钢纤维(SF)和微二氧化硅(MS)的个体和组合掺入混凝土的性质。 SF以六种不同的水平使用,低纤维体积(0.05%和0.1%),中纤维体积(0.25%和0.5%)和高纤维体积(1%和2%)。将每种体积分数的SF作为粘合剂体积的0%,5%和10%MS进行研究。根据重要机械和渗透性测试的结果评估所有混凝土混合物。结果表明,变化的纤维剂量对混凝土的压缩(抗压强度和弹性模量)和渗透性(吸水和氯离子渗透)性能的混合效应。通常,低至中等体积分数纤维可用于推进混凝土的抗压强度和弹性模量,而高纤维级分表现出对抗压强度和渗透性抗性的不利影响。使用SF的MS添加不仅有利于提高强度性质,而且还改善了纤维和粘合剂基质之间的相互作用。 MS最小化高纤维剂量对混凝土性质的负面影响。

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