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Fiber-reinforced lightweight self-compacting concrete incorporating scoria aggregates at elevated temperatures

机译:纤维增强的轻质自密实混凝土,在高温下掺有骨料

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摘要

Self-compacting concrete (SCC) has developed rapidly in modern concrete structures to accommodate the need of high deformability and considerable resistance to segregation. The lightweight aggregate called scoria is also utilized to manufacture lightweight self-compacting concrete (LWSCC) to improve the strength-to-weight ratio with considerable cost beneficial. Meanwhile, the LWSCC employs fibers (polypropylene [PP] and steel) equipping different replacement ratios of traditional aggregates, the SCC will be invented to reveal balanced fresh property, spalling behavior, mechanical performance especially at elevated temperatures. In this study, eight LWSCC mix designs were explored with varying fiber ratios by volume of PP fiber (0.1, 0.15, 0.20, and 0.25%) and steel fiber (0.25, 0.5, 0.75, and 1.0%). The effects of different fiber types and ratios are tested with fresh properties (slump flow and J-ring), hardened mechanical performance (compressive and tensile strength at 20 degrees C) and high temperature resistance (compressive and tensile strength, mass loss and spalling) after 28-day curing at 100, 300, 600, and 900 degrees C. The 0.25% optimum fiber ratio for PP fiber mix and 0.75% for steel fiber mix are determined with balanced fresh properties as well as high-temperature resistance for the hardened properties.
机译:自密实混凝土(SCC)在现代混凝土结构中得到了快速发展,以适应对高变形性和相当大的抗偏析性的需求。称为scoria的轻质骨料还用于制造轻质自密实混凝土(LWSCC),从而以显着的成本优势提高强度/重量比。同时,LWSCC采用的纤维(聚丙烯[PP]和钢)具有不同的替代传统骨料的比率,因此发明了SCC可以显示出平衡的新鲜性,剥落性,机械性能,尤其是在高温下。在这项研究中,研究了八种LWSCC混合料设计,其中PP纤维(0.1、0.15、0.20和0.25%)和钢纤维(0.25、0.5、0.75和1.0%)的纤维比率不同。测试了不同纤维类型和比例的效果,包括新鲜的特性(坍落度流动和J形环),硬化的机械性能(在20摄氏度下的抗压强度和拉伸强度)和耐高温性(抗压强度和拉伸强度,质量损失和剥落)在100、300、600和900摄氏度下固化28天后。确定PP纤维混合物的0.25%最佳纤维比和钢纤维混合物的0.75%的最佳新鲜度以及硬化后的耐高温性属性。

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