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首页> 外文期刊>Journal of materials in civil engineering >Influence of the Type of Coarse Lightweight Aggregate on Properties of Semilightweight Self-Consolidating Concrete
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Influence of the Type of Coarse Lightweight Aggregate on Properties of Semilightweight Self-Consolidating Concrete

机译:粗轻骨料类型对半轻型自密实混凝土性能的影响

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This paper presents studies on the properties of fresh and hardened semilightweight self-consolidating concrete (SLWSCC) mixtures, produced with two types of manufactured coarse lightweight aggregates (LWA) and normal weight sand. The first type, a sintered pulverized fuel ash, was made from an industrial by-product, fly ash, whereas the second one, an expanded clay, was produced from a naturally sourced clay. For all mixtures, normal weight sand was used as a fine fraction of aggregates, and the portland cement was partially replaced with a limestone powder. The SLWSCC was produced with different water presaturation regimes of the LWAs. The desired initial slump-flow spread was set between 700 and 800 mm. The effect of three superplasticizers was evaluated by testing properties of SLWSCC, normal weight SCC, and paste mixtures. Three SCC fresh properties were measured: the slump-flow, the V-funnel flow time, and the J-ring blocking step. Moreover, the slump-flow loss was evaluated. The degree of segregation was assessed in both fresh and hardened states. Additionally, the hardened density and the compressive strengths were tested. All SLWSCC mixtures were produced with a desired range of slump-flow spread and with satisfactory passing ability assessed with the J-ring test. SLWSCCs prepared with the expanded clay LWA were less sensitive to the variation of water presaturation levels and showed lower viscosity than those made with the sintered pulverized fuel ash LWA. Only mixtures containing SP-3 superplasticizer showed acceptable workability loss resistance. The saturated surface-dry density of all of the mixtures varied in a range of 2,025-2,125 kg/m~3. Mixtures containing 29% of coarse LWAs and 71 % of sand (by mass) had 24-h and 28-day compressive strengths above 20 and 40 MPa, respectively, but the mixtures made with the expanded clay were slightly weaker.
机译:本文介绍了由两种类型的人造轻质粗骨料(LWA)和普通重量砂制成的新鲜和硬化半轻型自固结混凝土(SLWSCC)混合物的性能研究。第一种是烧结的粉煤灰,是由工业副产品粉煤灰制成的,而第二种是膨胀粘土,是由天然来源的粘土制成的。对于所有混合物,均使用标准重量的沙子作为细骨料,将硅酸盐水泥部分替换为石灰石粉末。 SLWSCC是用LWA的不同水饱和度方案生产的。所需的初始坍落度流散设置在700至800 mm之间。通过测试SLWSCC,正常重量SCC和糊状混合物的性能,评估了三种高效减水剂的效果。测量了三个SCC新鲜特性:坍落度,V形漏斗流动时间和J形环阻塞步骤。此外,评价坍落度损失。在新鲜和硬化状态下均评估了隔离度。另外,测试了硬化密度和抗压强度。生产的所有SLWSCC混合物均具有所需的坍落度流散范围,并通过J形环试验评估其合格的通过能力。用膨化粘土LWA制备的SLWSCC对水预饱和水平的变化较不敏感,并且其粘度比用烧结粉煤灰LWA制备的SLWSCC低。仅含有SP-3高效减水剂的混合物显示出可接受的耐加工性损失。所有混合物的饱和表面干密度在2,025-2,125 kg / m〜3的范围内变化。含有29%的粗LWA和71%的砂(按质量计)的混合物分别具有20和40 MPa以上的24小时和28天抗压强度,但是用膨胀粘土制得的混合物稍弱。

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