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Influence of aggregate materials characteristics on the drying shrinkage properties of mortar and concrete

机译:骨料特性对砂浆和混凝土干燥收缩性能的影响

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摘要

This paper presents an experimental study to clarify the effect of various aggregate materials characteristics on the drying shrinkage property in mortar and concrete specimens incorporating fourteen kinds of fine aggregate materials (standard sand, natural sand, marine sand, various kinds of slag-type sand, and various kinds of crushed sand) and three kinds of coarse aggregate materials (andesite gravel, hard sandstone gravel, and limestone gravel). The test results revealed that the characteristics of fine and coarse aggregate materials play an important role in controlling the drying shrinkage property of mortar and concrete, respectively. Limestone sand and blast furnace slag sand can restrain the drying shrinkage of mortar specimens about 22% and 30%, respectively, compared to the case of mortar incorporating standard sand. The drying shrinkage strain of concrete specimens proportionally increases with the increase of aggregate shrinkage strain, specific surface area and 6–30 nm in diameter pore volume of aggregates, which implies the significant influence of aggregate characteristics on drying shrinkage development in concrete. It was also found that the drying shrinkage property in concrete can be affected by the static modulus of elasticity and total amount of water content, in which the water absorption ratio, unit mass of aggregate and unit water content were considered. Finally, the experimental results presented are useful information for providing a good perspective for the concrete mixture design practices taking into consideration that concrete drying shrinkage could be controlled by appropriate aggregate characteristics and reducing the total amount of water content.
机译:本文进行了一项实验研究,以阐明各种骨料特性对掺入14种细骨料(标准砂,天然砂,海事砂,各种矿渣型砂,和各种碎石)和三种粗骨料(安山岩碎石,硬质砂岩碎石和石灰石碎石)。测试结果表明,细骨料和粗骨料的特性分别在控制砂浆和混凝土的干缩性能方面起着重要作用。与掺入标准砂的砂浆相比,石灰石砂和高炉矿渣砂分别可将砂浆样品的干燥收缩率分别抑制约22%和30%。混凝土试件的干缩应变随骨料收缩应变,比表面积和骨料直径孔径的6-30 nm的增加而成比例增加,这暗示了骨料特性对混凝土干缩发展的显着影响。还发现混凝土的干燥收缩性能会受到静弹性模量和含水量的影响,其中考虑了吸水率,骨料的单位质量和单位含水量。最后,考虑到可以通过适当的骨料特征控制混凝土干燥收缩率并减少水含量的总量,所给出的实验结果为混凝土混合物设计实践提供了良好的视角。

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