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Fiber reinforced dry-mix shotcrete with metakaolin

机译:偏高岭土纤维增强干混喷射混凝土

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Both material and fiber rebounds in shotcrete are high, and the use of an appropriate mineral admixture is known to alleviate the problem. However, the exact influence of the particle size gradation and shape on the rebound and the ultimate mechanical properties of shotcrete are poorly understood. In the same context, high reactivity metakaolin (HRM), which has shown a great deal of promise in cast concrete, has not been investigated in shotcrete. This study is divided into two parts: in the first part, the effectiveness of four mineral admixtures - fly ash, silica fume, HRM and carbon black - with varying particle size gradations and shapes was investigated from a rebound reduction point of view. In the second part, HRM and silica fume were compared on the basis of the hardened mechanical properties with special emphasis on flexural toughness in the presence of fiber reinforcement. It was found that so far as rebound reduction is concerned, particle size of the mineral admixture is a more governing factor than its shape. Silica fume, due to its ultra-fine particle size, is superior to HRM in reducing rebound, but a blend of silica fume and HRM achieves better overall properties.
机译:喷射混凝土的材料和纤维回弹都很高,并且已知使用适当的矿物掺合料可以减轻该问题。但是,人们对粒度等级和形状对回弹的确切影响以及喷射混凝土的最终机械性能了解甚少。在相同的背景下,尚未在喷射混凝土中研究高反应性偏高岭土(HRM),这种高反应性偏高岭土在浇铸混凝土中显示出很大的前景。这项研究分为两个部分:第一部分,从回弹降低的角度研究了具有不同粒度和形状的四种矿物掺合料(粉煤灰,硅粉,HRM和炭黑)的有效性。在第二部分中,根据硬化后的机械性能对HRM和硅粉进行了比较,其中特别强调了存在纤维增强材料时的弯曲韧性。已经发现,就减少回弹而言,矿物掺合料的粒度比其形状更重要。硅粉由于具有超细的粒径,在减少回弹方面优于HRM,但硅粉和HRM的混合物可实现更好的整体性能。

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