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Reactive Powder Concrete Mix Ratio and Steel Fiber Content Optimization under Different Curing Conditions

机译:不同养护条件下活性粉末混凝土的配合比及钢纤维含量的优化

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摘要

In this paper, a practical reactive powder concrete mixture ratio is created on the basis of an orthogonal experiment. Previous studies have combined the compressive and splitting tensile strengths of four categories of reactive powder concrete (RPC) for major materials. These categories include water/binder ratio, silica fume volume content, sand/binder ratio, and dosage of fly ash volume. The optimal mixing proportion of each factor was determined by analyzing the compressive strength of the RPC matrix. For this purpose, steel fiber was used as a reinforcing agent. The compressive and splitting tensile strength test results of steel fiber RPC were analyzed by comparing compound, standard, and natural curing. This was conducted to explore the improvement effect of different steel fiber contents on compressive performance, especially tensile strength of the RPC matrix. According to the results, the optimal steel fiber content was found to be 4% under the three curing conditions. The effect of compound curing on early strength was found to be greater in RPC than by natural or standard curing. However, the effect of late improvement is not obvious. Although standard curing is slightly stronger than natural curing, the performance under the latter can still meet engineering requirements.
机译:在正交试验的基础上,建立了实用的反应性粉末混凝土配合比。先前的研究结合了四种主要材料的反应性粉末混凝土(RPC)的抗压强度和劈裂抗张强度。这些类别包括水/粘合剂比率,硅粉体积含量,沙/粘合剂比率和粉煤灰剂量。通过分析RPC基质的抗压强度,确定每种因素的最佳混合比例。为此目的,钢纤维被用作增强剂。通过对复合,标准和自然固化的比较,分析了钢纤维RPC的压缩和劈裂拉伸强度测试结果。旨在探讨不同含量的钢纤维对RPC基体抗压性能(特别是抗张强度)的改善效果。根据结果​​,在三种固化条件下,最佳钢纤维含量为4%。发现复合固化对早期强度的影响在RPC中比通过自然或标准固化要大。但是,后期改进的效果并不明显。尽管标准固化比自然固化略强,但自然固化下的性能仍可以满足工程要求。

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