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Strength and Durability of Concretes with Slag-Fly Ash-Portland Cement

机译:粉煤灰粉煤灰硅酸盐水泥混凝土的强度和耐久性

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Composite cements containing portland cement (50%), fly ash (25%) and slag (25%), all interground at a Blaine fineness of about 400 or 500 m~2/kg, were produced. Superplasticized concretes with a slump of 200-230 mm were manufactured by using sulfonated naphthalene (SN) or acrylic polymer (AP). The dosage of superplasticizers was a little higher (10% more) when finer cements were used. The AP superplasticizer was more effective than that based on SN in terms of lower dosage (20% less) and lower water-cementitious material ratio (10% less) at equal workability. Consequently, higher compressive strength were obtained for concretes with the AP admixture rather than with the NS superplasticizer. The better performance of the AP superplasticizer with respect to the SN admixture was independent of the curing temperature (5° or 20° at early (1 day) and later ages (28-90 days). All the concrete mixtures perform very well for the durability behavior in terms of lower CO_2 penetration and chloride diffusion. However, due to the lower water-cementitious material ratio (0.29 vs. 0.32) concretes with the acrylic polymer are potentially more durable than those with the naphthalene-based superplasticizer.
机译:生产出的复合水泥包含波特兰水泥(50%),粉煤灰(25%)和矿渣(25%),全部以布莱恩细度约400或500 m〜2 / kg进行中间研磨。通过使用磺化萘(SN)或丙烯酸聚合物(AP)生产坍落度为200-230 mm的超塑化混凝土。当使用更细的水泥时,高效减水剂的用量略高(多出10%)。在相同的可加工性下,AP高效减水剂比基于SN的增塑剂更有效,其用量更低(减少20%),水硬性材料比率更低(减少10%)。因此,使用AP掺混料比使用NS高效减水剂可获得更高的抗压强度。 AP高效减水剂相对于SN混合料的更好性能与固化温度(早期(1天)和后期(28-90天)的5°或20°)无关,所有混凝土混合物的性能都非常好。以较低的CO_2渗透性和氯化物扩散性为基础的耐久性能,但是,由于水胶凝性材料比率较低(0.29对0.32),丙烯酸类聚合物的混凝土可能比萘基高效减水剂的混凝土更耐用。

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