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  5. Mechanical Properties and Environmental Evaluation of Ultra-High-Performance Concrete with Aeolian Sand

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Article
English
2020

Mechanical Properties and Environmental Evaluation of Ultra-High-Performance Concrete with Aeolian Sand

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English
2020
Materials
Vol 13 (14)
DOI: 10.3390/ma13143148

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Hongyan Chu
Hongyan Chu

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Hongyan Chu
Fengjuan Wang
Liguo Wang
+2 more

Abstract

Ultra-high-performance concrete (UHPC) has received increasing attention in recent years due to its remarkable ductility, durability, and mechanical properties. However, the manufacture of UHPC can cause serious environmental issues. This work addresses the feasibility of using aeolian sand to produce UHPC, and the mix design, environmental impact, and mechanical characterization of UHPC are investigated. We designed the mix proportions of the UHPC according to the modified Andreasen and Andersen particle packing model. We studied the workability, microstructure, porosity, mechanical performance, and environmental impact of UHPC with three different water/binder ratios. The following findings were noted: (1) the compressive strength, flexural strength, and Young’s modulus of the designed UHPC samples were in the ranges of 163.9–207.0 MPa, 18.0–32.2 MPa, and 49.3–58.9 GPa, respectively; (2) the compressive strength, flexural strength, and Young’s modulus of the UHPC increased with a decrease in water/binder ratio and an increase in the steel fibre content; (3) the compressive strength–Young’s modulus correlation of the UHPC could be described by an exponential formula; (4) the environmental impact of UHPC can be improved by decreasing its water/binder ratio. These findings suggest that it is possible to use aeolian sand to manufacture UHPC, and this study promotes the application of aeolian sand for this purpose.

How to cite this publication

Hongyan Chu, Fengjuan Wang, Liguo Wang, Taotao Feng, Danqian Wang (2020). Mechanical Properties and Environmental Evaluation of Ultra-High-Performance Concrete with Aeolian Sand. Materials, 13(14), pp. 3148-3148, DOI: 10.3390/ma13143148.

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Publication Details

Type

Article

Year

2020

Authors

5

Datasets

0

Total Files

0

Language

English

Journal

Materials

DOI

10.3390/ma13143148

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