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首页> 外文期刊>Journal of advanced concrete technology >Optimization for Mix Proportion of Reactive Powder Concrete Containing Phosphorous Slag by Using Packing Model
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Optimization for Mix Proportion of Reactive Powder Concrete Containing Phosphorous Slag by Using Packing Model

机译:用填充模型将含磷渣混凝土混合比例的优化

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摘要

A mix-design method based on packing model was used to optimize the mix proportion of Reactive Powder Concrete (RPC) containing phosphorous slag in this paper. The design aimed to achieve a densely compacted matrix by applying the modified Andreasen particle packing model, i.e., the Dinger-Funk particle size distribution (PSD) equation. MATLAB and Excel Solver Tool were utilized to implement the calculation of the design with four steps. The outcome of the design was quite similar to another two results obtained respectively through the method for minimum water demand of paste and through the orthogonal design for mix proportion of RPC. According to these three mix proportions, RPC specimens with volume fraction of steel fiber of 1% were produced after they had been cured in 95°C steam for 72 hours. Their compressive and flexural strength are more than 180 MPa and 28 MPa, respectively. Microstructural investigation of specimens through mercury intrusion porosimetry and scanning electron microscopy confirms the very low porosity and quite compact microstructure of the RPC.
机译:基于包装模型的混合设计方法用于优化本文含有磷渣的活性粉末混凝土(RPC)的混合比例。该设计旨在通过应用改性的Andreasen颗粒包装模型来实现密集的基质,即Dinger-Funk粒度分布(PSD)方程。利用MATLAB和Excel求解器工具来实现设计的计算。设计的结果与分别通过用于糊状物的最小水需求的方法和通过正交设计获得的另外两种结果与RPC的混合比例分别获得。根据这三种混合比例,在95℃蒸汽中固化72小时后,生产具有1%的钢纤维的体积分数的RPC标本。它们的压缩和弯曲强度分别超过180MPa和28MPa。通过汞侵入孔隙测定法和扫描电子显微镜的微观结构研究证实了RPC的非常低的孔隙率和相当紧凑的微观结构。

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