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Study on Mix Proportion Optimization of Manufactured Sand RPC and Design Method of Steel Fiber Content under Different Curing Methods

机译:不同固化方法下制造砂RPC混合比例优化及钢纤维含量设计方法的研究

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摘要

This study investigated four factors (water/binder ratio, silica fume, fly ash, and sand/binder ratio) using the orthogonal experimental design method to prepare the mix proportions of a manufactured sand reactive powder concrete (RPC) matrix to determine the optimal matrix mix proportions. On this basis, we assessed the compressive and splitting tensile strengths of different steel fiber contents under natural, standard, and compound curing conditions to develop an economical and reasonable RPC for various engineering requirements. A calculation method for the RPC strength of the steel fiber contents was evaluated. The results showed that the optimum steel fiber content for manufactured sand RPC is 4% under natural, standard, and compound curing conditions. Compared with standard curing, compound curing can improve the early strength of manufactured sand RPC but only has a small effect on the enhancement of late strength. Although the strength of natural curing is slightly lower than that of standard curing, it basically meets project requirements and is beneficial for practical applications. The calculation formula of 28-day compressive and splitting tensile strengths of manufactured sand RPC steel fiber at 0%−4% is proposed to meet the different engineering requirements and the flexible selection of steel fiber content.
机译:本研究研究了四种因素(水/粘合剂比例,二氧化硅烟灰,粉煤灰和砂/粘合剂比例)使用正交的实验设计方法制备制造的砂反应性​​粉末混凝土(RPC)基质的混合比例来确定最佳矩阵混合比例。在此基础上,我们在天然,标准和复合固化条件下评估了不同钢纤维内容物的压缩和分裂拉伸强度,以开发经济合理的RPC,用于各种工程要求。评价钢纤维内容物RPC强度的计算方法。结果表明,在天然,标准和复合固化条件下,制造的砂RPC的最佳钢纤维含量为4%。与标准固化相比,复合固化可以提高制造的砂RPC的早期强度,但只对晚期强度的提高效果很小。虽然天然固化的强度略低于标准固化,但它基本满足项目要求,对实际应用有益。提出了0%-4%制造的砂RPC钢纤维的28天压缩和分裂拉伸强度的计算公式,以满足不同的工程要求和钢纤维含量的灵活选择。

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