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The influence of cement content and water/cement ration on the durability of Portland cement concretes exposed to silage effluent

机译:水泥含量和水灰比对青贮废水中硅酸盐水泥混凝土耐久性的影响

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This paper outlines the findings of a study on the influence of cement content (275-425 kg m{sup}3) and water cement radio (0.45 to 0.75) on the durability of concrete exposed to silage effluent. The test facility exposed concrete specimens to acontrolled flow of effluent such that the volume of effluent in each 28 day cycle of exposure simulated one year's volume and expected period of effluent flow at the front of a well-drained 200 t horizontal silo. The relative performance of the concretemixes was assessed over 10 cycles through measurement of saturated mass loss and surface depth change. The saturated mass loss measurement gave more consistent results. Optimum performance was recorded in concretes of cement content 325 and 375 kg m{sup}3 with water cement ratios of 0.55 and 0.50, respectively. The studies indicate that water cement ratio is a more critical variable than cement content. Deterioration increased significantly when the water cement ratio exceeded 0.5. Increasing the cementcontent beyond the minimum recommended value in current national specifications (350 kg m{sup}3) did not lead to a reduction in mass loss rate. The benefits of high cement content concretes is questioned, therefore, not least because of the increased risk of early-thermal cracking. It is postulated that specifications should limit the maximum water cement ratio and both maximum and minimum cement content.
机译:本文概述了水泥含量(275-425 kg m {sup} 3)和水灰比(0.45至0.75)对青贮废水暴露混凝土耐久性影响的研究结果。测试设施将混凝土标本暴露于受控的污水流中,以使暴露的每个28天周期中的污水量模拟排水良好的200吨水平筒仓前端的一年的体积和预期的污水流期。通过测量饱和质量损失和表面深度变化,在10个循环中评估了混凝土混合物的相对性能。饱和质量损失测量给出了更一致的结果。在水泥含量为325和375 kg m {sup} 3,水灰比分别为0.55和0.50的混凝土中记录到最佳性能。研究表明,水灰比是比水泥含量更为关键的变量。当水灰比超过0.5时,劣化显着增加。将水泥含量增加到超过当前国家规范的最低推荐值(350 kg m {sup} 3)并没有导致质量损失率的降低。因此,高水泥含量混凝土的好处受到质疑,尤其是因为早期热裂风险增加。假定规范应限制最大水灰比以及最大和最小水泥含量。

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