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Application of Fuller's ideal curve and error function to making high performance concrete using rice husk ash

机译:富勒理想曲线和误差函数在稻壳灰制备高性能混凝土中的应用

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This paper focuses on the application of Fuller's ideal gradation curve to theoretically design blended ratio of all solid materials of high performance concrete (HPC), with the aid of error function, and then to study the effect of rice husk ash (RHA) on the performance of HPC. The residual RHA, generated when burning rice husk pellets at temperatures varying from 600 to 800°C, was collected at steam boilers in Vietnam. The properties of fresh and hardened concrete are reviewed. It is possible to obtain the RHA concrete with comparable or better properties than those of the specimen without RHA with lower cement consumption. High flowing concrete designed by the proposed method was obtained without bleeding or segregation. The application of the proposed method for HPC can save over 50% of the consumption of cement and limit the use of water. Its strength efficiency of cement in HPC is 1.4-1.9 times higher than that of the traditional method. Local standards of durability were satisfied at the age of 91 days both by concrete resistivity and ultrasonic pulse velocity.
机译:本文致力于利用富勒理想级配曲线在理论上设计高性能混凝土(HPC)的所有固体材料的配合比,并借助误差函数,然后研究稻壳灰(RHA)对其影响。 HPC的性能。在越南的蒸汽锅炉中收集在600至800°C的温度下燃烧稻壳颗粒时产生的残留RHA。对新鲜和硬化混凝土的性能进行了综述。与不含RHA的试样相比,可以获得水泥性能较低的RHA混凝土。通过该方法设计的高流动性混凝土获得了无渗出或偏析的效果。所提出的HPC方法的应用可以节省超过50%的水泥消耗并限制水的使用。它在HPC中水泥的强度效率是传统方法的1.4-1.9倍。在91天龄时,混凝土的电阻率和超声脉冲速度都满足了当地的耐久性标准。

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