Please use this identifier to cite or link to this item:
http://hdl.handle.net/10397/116514
| Title: | Development and mechanical behaviour of ultra-high-performance seawater sea-sand concrete | Authors: | Teng, JG Xiang, Y Yu, T Fang, Z |
Issue Date: | Oct-2019 | Source: | Advances in structural engineering, Oct. 2019, v. 22, no. 14, p. 3100-3120 | Abstract: | Ultra-high-performance concrete is typically defined as an advanced cementitious material that has a compressive strength of over 150 MPa and superior durability. This article presents the development of a new type of ultra-high-performance concrete, namely, ultra-high-performance seawater sea-sand concrete. The development of ultra-high-performance seawater sea-sand concrete addresses the challenges associated with the shortage of freshwater, river-sand and coarse aggregate in producing concrete for a marine construction project. When used together with corrosion-resistant fibre-reinforced polymer composites, the durability of the resulting structures (i.e. hybrid fibre-reinforced polymer–ultra-high-performance seawater sea-sand concrete structures) in a harsh environment can be expected to be outstanding. The ultra-high strength of ultra-high-performance seawater sea-sand concrete and the unique characteristics of fibre-reinforced polymer composites also offer tremendous opportunities for optimization towards new forms of high-performance structures. An experimental study is presented in this article to demonstrate the concept and feasibility of ultra-high-performance seawater sea-sand concrete: ultra-high-performance seawater sea-sand concrete samples with a 28-day cube compressive strength of over 180 MPa were successfully produced; the samples were made of seawater and sea-sand, but without steel fibres, and were cured at room temperature. The experimental programme also examined the effects of a number of relevant variables, including the types of sand, mixing water and curing water, among other parameters. The mini-slump spread, compressive strength and stress–strain curve of the specimens were measured to clarify the effects of experimental variables. The test results show that the use of seawater and sea-sand leads to a slight decrease in workability, density and modulus of elasticity; it is also likely to slightly increase the early strength but to slightly decrease the strengths at 7 days and above. Compared with freshwater curing, the seawater curing method results in a slight decrease in elastic modulus and compressive strength. | Keywords: | Concrete mix proportion Sea-sand Seawater Seawater sea-sand concrete Ultra-high-performance concrete |
Publisher: | Sage Publications, Inc. | Journal: | Advances in structural engineering | ISBN: | ISSN: | 1369-4332 | EISSN: | 2048-4011 | DOI: | 10.1177/1369433219858291 | Rights: | This is the accepted version of the publication Teng J-G, Xiang Y, Yu T, Fang Z. Development and mechanical behaviour of ultra-high-performance seawater sea-sand concrete. Advances in Structural Engineering. 2019;22(14):3100-3120. Copyright © 2019 The Author(s). DOI: 10.1177/1369433219858291. |
| Appears in Collections: | Journal/Magazine Article |
Files in This Item:
| File | Description | Size | Format | |
|---|---|---|---|---|
| Teng_Development_Mechanical_Behaviour.pdf | Pre-Published version | 1.6 MB | Adobe PDF | View/Open |
Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.



