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减缩剂对不同水灰比混凝土干燥收缩的影响

Effect of Shrinkage Reducing Admixture on Drying Shrinkage of Concrete with Different w/c Ratios.

作者信息

Kioumarsi Mahdi, Azarhomayun Fazel, Haji Mohammad, Shekarchi Mohammad

机构信息

Department of Civil Engineering and Energy Technology, OsloMet-Oslo Metropolitan, 0166 Oslo, Norway.

School of Civil Engineering, College of Engineering, University of Tehran, Tehran 1417935840, Iran.

出版信息

Materials (Basel). 2020 Dec 15;13(24):5721. doi: 10.3390/ma13245721.

Abstract

The reduction of the moisture content of concrete during the drying process reduces the concrete's volume and causes it to shrink. In general, concrete shrinkage is a phenomenon that causes concrete volume to dwindle and can lead to durability problems. There are different types of this phenomenon, among them chemical shrinkage, autogenous shrinkage, drying shrinkage including free shrinkage and restrained shrinkage, and thermal contraction. Shrinkage-reducing admixtures are commercially available in different forms. The present study investigates the effect of liquid propylene glycol ether on mechanical properties and free shrinkage induced by drying at different water-cement (w/c) ratios. Furthermore, the effect of shrinkage-reducing admixtures on the properties of hardened concrete such as compressive and tensile strength, electrical resistivity, modulus of elasticity, free drying shrinkage, water absorption, and depth of water penetration was investigated. The results indicated that shrinkage reducing agents performed better in a low w/c ratio and resulted in up to 50% shrinkage reduction, which was due to the surface reduction of capillary pores. The prediction of free shrinkage due to drying was also performed using an artificial neural network.

摘要

在干燥过程中,混凝土含水量的降低会使其体积减小并导致收缩。一般来说,混凝土收缩是一种致使混凝土体积减小且可能引发耐久性问题的现象。这种现象有不同类型,其中包括化学收缩、自收缩、干燥收缩(包括自由收缩和约束收缩)以及热收缩。减缩剂有不同的商业形式。本研究调查了液体丙二醇醚在不同水灰比(w/c)下对力学性能和干燥引起的自由收缩的影响。此外,还研究了减缩剂对硬化混凝土性能的影响,如抗压强度、抗拉强度、电阻率、弹性模量、自由干燥收缩、吸水率和水渗透深度。结果表明,减缩剂在低水灰比时表现更佳,收缩减少高达50%,这是由于毛细孔表面积减小所致。还使用人工神经网络对干燥引起的自由收缩进行了预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a32/7765446/543b3b8afd11/materials-13-05721-g011.jpg

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