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使用海砂和海水的自密实高强度纺织增强混凝土。

Self-Compacting High-Strength Textile-Reinforced Concrete Using Sea Sand and Sea Water.

作者信息

Kryzhanovskyi Vitalii, Avramidou Athanasia, Orlowsky Jeanette, Spyridis Panagiotis

机构信息

Faculty of Architecture and Civil Engineering, TU Dortmund University, 44227 Dortmund, Germany.

Chair of Solid Construction, Faculty of Agricultural and Environmental Sciences, University of Rostock, 18059 Rostock, Germany.

出版信息

Materials (Basel). 2023 Jul 10;16(14):4934. doi: 10.3390/ma16144934.

Abstract

In this study, a self-compacting high-strength concrete based on ordinary and sulfate-resistant cements was developed for use in textile-reinforced structural elements. The control concrete was made from quartz sand and tap water, and the sea concrete was made from sea water and sea sand for the purpose of applying local building materials to construction sites in the coastal area. The properties of a self-compacting concrete mixture, as well as concrete and textile-reinforced concrete based on it, were determined. It was found that at the age of 28 days, the compressive strength of the sea concrete was 72 MPa, and the flexural strength was 9.2 MPa. The compressive strength of the control concrete was 69.4 MPa at the age of 28 days, and the flexural strength was 11.1 MPa. The drying shrinkage of the sea concrete at 28 days exceeded the drying shrinkage of the control concrete by 18%. The uniaxial tensile test showed the same behavior of the control and marine textile-reinforced concrete; after the formation of five cracks, only the carbon textile reinforcement came into operation. Accordingly, the use of sea water and sea sand in combination with a cement with reduced CO emissions and textile reinforcement for load-bearing concrete structures is a promising, sustainable approach.

摘要

在本研究中,开发了一种基于普通水泥和抗硫酸盐水泥的自密实高强度混凝土,用于纺织增强结构构件。对照混凝土由石英砂和自来水制成,海混凝土由海水和海砂制成,目的是将当地建筑材料应用于沿海地区的建筑工地。测定了自密实混凝土混合物以及基于该混合物的混凝土和纺织增强混凝土的性能。结果发现,在28天龄期时,海混凝土的抗压强度为72MPa,抗弯强度为9.2MPa。对照混凝土在28天龄期时的抗压强度为69.4MPa,抗弯强度为11.1MPa。海混凝土在28天时的干燥收缩比对照混凝土的干燥收缩大18%。单轴拉伸试验表明,对照纺织增强混凝土和海纺织增强混凝土表现出相同的性能;在形成五条裂缝后,只有碳纤维增强材料开始发挥作用。因此,将海水和海砂与低二氧化碳排放量水泥以及纺织增强材料结合用于承重混凝土结构是一种有前景的可持续方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5421/10381865/837914df814f/materials-16-04934-g001.jpg

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