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Effect of grinding method and particle size distribution on the properties of Portland-pozzolan cement

机译:研磨方法和粒度分布对波特兰火山灰水泥性能的影响

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摘要

This paper describes the influence of the producing method (Inter-grinding or separate grinding) and particle size distribution (PSD) on properties of Portland-pozzolan cements (PPC). Experiments were carried out on cement paste including normal consistency, time of setting, Ca(OH)_2 content, and heat of hydra-tion, on cement mortar including potential alkali-silica reaction, and on concrete including compressive strength, sorptivity, electrical resistivity, and rapid chloride permeability. In this study, 10 types of cements including two types of Portland cement (PC), and eight types of Portland-pozzolan cement (PPC) were used. The results show that PPC provided better mechanical and durability properties compared to PC properties. This was evident especially in PPC containing 25% Trass. Also, the durability properties of cements were not affected by increase of fineness significantly. Particle size distribution (PSD) of PPC varied for each method of production, which was largely due to the amount of Trass in the PPC. Finally, it was concluded that physical properties of cements obtained by Inter-grinding were slightly better than that of separate grinding; however, durability properties were not affected by grinding method. Also, for achieving the same percentage of 45-μm residue, Inter-grinding is less energy-demanding than separate grinding (shorter grinding time is required). In addition, the use of cements with high fineness seems not economically beneficial due to its low effect on long term properties.
机译:本文描述了生产方法(中间研磨或单独研磨)和粒度分布(PSD)对波特兰火山灰水泥(PPC)性能的影响。在水泥浆上进行了包括正常稠度,凝固时间,Ca(OH)_2含量和水化热在内的试验,在水泥砂浆上进行了可能的碱-硅反应,并在混凝土上进行了抗压强度,吸水率,电阻率试验,并具有快速的氯化物渗透性。在这项研究中,使用了10种水泥,其中包括2种波特兰水泥(PC)和8种波特兰火山灰水泥(PPC)。结果表明,与PC性能相比,PPC具有更好的机械性能和耐久性。这在含有25%Trass的PPC中尤其明显。另外,水泥的耐久性不受细度增加的显着影响。 PPC的粒径分布(PSD)随每种生产方法而变化,这在很大程度上是由于PPC中的Tras数量所致。最后,得出的结论是,相互研磨得到的水泥的物理性能比单独研磨要好一些。但是,耐久性不受研磨方法的影响。同样,为了获得相同百分比的45-μm残留物,相互研磨比单独研磨需要的能源更少(需要更短的研磨时间)。另外,使用高细度的水泥由于对长期性能的影响小,因此在经济上似乎无益。

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