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IMPACT PERFORMANCE OF LOW CEMENT ULTRA-HIGH-PERFORMANCE CONCRETE

机译:低水泥超高性能混凝土的冲击性能

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Technology advancement in concrete industry and expanding interest for high quality construction materials have prompted the development of Ultra-High-Performance Concrete (UHPC). Despite of many advantages gained using UHPC, however, conventional design of UHPC poses many concerns especially on sustainability issues. Producing UHPC, requires relatively high amount of cement content and in most cases, the compositions are not optimized causing an increase in materials and energy cost. Low cement UHPC was proposed to minimize the economic and environmental disadvantages of current UHPC by incorporating high volume of Fly Ash (FA) and Silica Fume (SF) as cement replacement materials and locally available coarse aggregates. An experimental program was carried out to evaluate the effect of combined FA and SF on mechanical and impact performance of low cement UHPC. Both hooked and straight steel fibers with aspect ratio of 83 and 100 were used respectively as the reinforcing material. An enhancement of 111% was observed in impact resistance of the fibrous concretes with an incorporation of both FA and SF replacing 50% of cement, as compared to specimen without any replacement.
机译:混凝土行业的技术进步和对高质量建筑材料的兴趣不断增长,促使超高性能混凝土(UHPC)的发展。尽管使用UHPC获得了许多优势,但是,UHPC的常规设计引起了很多关注,尤其是在可持续性问题上。生产UHPC需要相对较高的水泥含量,并且在大多数情况下,未优化组合物,从而导致材料和能源成本的增加。提出了低水泥UHPC,通过掺入大量的粉煤灰(FA)和硅粉(SF)作为水泥替代材料和本地可用的粗骨料,以最大程度地减少当前UHPC的经济和环境劣势。进行了一个实验程序,以评估FA和SF组合对低水泥UHPC的力学性能和冲击性能的影响。纵横比分别为83和100的钩形和直形钢纤维均用作增强材料。与不含任何替代品的样品相比,通过掺入FA和SF替代了50%的水泥,纤维混凝土的抗冲击性提高了111%。

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