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Influence of grinding method and particle size distribution on the properties of Portland-limestone cements

机译:研磨方法和粒度分布对硅酸盐-石灰石水泥性能的影响

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The benefits of using limestone as a partial replacement of Portland cement (PC) are well established in the literature. Economic and environmental advantages by reducing CO2 emissions are well known. This paper describes the influence of the producing method (intergrinding or separate grinding) and particle size distribution on properties of Portland-limestone cements (PLC). Experiments were carried out on cement paste including normal consistency, time of setting, and heat of hydration, on cement mortar including compressive and flexural strength, and potential alkali reactivity of aggregates, and on concrete including compressive strength, sorptivity, electrical resistivity, and rapid chloride permeability. In this study, ten types of cements including two types of PC, and eight types of PLC were used. The results show that mechanical and durability properties of PLC were not affected significantly by grinding method. In addition, the use of cements with high fineness is not very effective on improvement of durability properties.
机译:使用石灰石部分替代波特兰水泥(PC)的好处在文献中已得到充分证实。通过减少CO 2排放的经济和环境优势是众所周知的。本文描述了生产方法(互磨或单独研磨)和粒度分布对硅酸盐-石灰石水泥(PLC)性能的影响。在水泥浆上进行了包括正常稠度,凝固时间和水化热的试验,在水泥砂浆上进行了抗压强度和挠曲强度以及集料的潜在碱反应性的试验,并在混凝土上进行了抗压强度,吸水率,电阻率和快速试验。氯化物渗透性。在这项研究中,使用了十种类型的水泥,包括两种类型的PC和八种类型的PLC。结果表明,研磨方法对PLC的机械性能和耐久性没有明显的影响。另外,使用具有高细度的水泥在改善耐久性方面不是很有效。

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