Investigation on dynamic mechanical properties of fly ash/slag-based geopolymeric recycled aggregate concrete

被引:134
作者
Tang, Zhuo [1 ]
Li, Wengui [1 ]
Tam, Vivian W. Y. [2 ]
Luo, Zhiyu [1 ]
机构
[1] Univ Technol Sydney, Sch Civil & Environm Engn, Sydney, NSW 2007, Australia
[2] Western Sydney Univ, Sch Comp Engn & Math, Sydney, NSW 2751, Australia
基金
澳大利亚研究理事会;
关键词
Geopolymeric recycled aggregate concrete (GRAC); Dynamic compressive strength; Failure patterns; Energy absorption; Split Hopkinson pressure bar (SHPB); SPLIT HOPKINSON BAR; COMPRESSIVE BEHAVIOR; FAILURE-MECHANISM; LOADING RATE; STRAIN-RATE; ASH; STRENGTH; IMPACT; SLAG; PERFORMANCE;
D O I
10.1016/j.compositesb.2020.107776
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
By harnessing the benefits from both construction and demolition waste recycling and geopolymer binders, geopolymeric recycled aggregate concrete (GRAC) can contribute to the green and eco-friendly construction material products. In this study, the compressive behavior of GRAC based on fly ash and slag was experimentally investigated under both quasi-static and dynamic loadings. Quasi-static compressive tests were performed by using a high-force servo-hydraulic test system, while dynamic compressive tests were carried out by using a empty set80-mm split Hopkinson pressure bar (SHPB) apparatus. The compressive properties of GRAC under dynamic loading, including stress-strain curves, energy absorption capability, and failure modes were obtained and compared with those under quasi-static loading. The results show that the compressive properties of GRAC exhibit a strong strain rate dependency. Although the recycled aggregate replacement decreases the quasi-static compressive strength, it exhibits a slight effect on the compressive strength at high strain rates. The dynamic increase factor (DIF) for compressive strength exhibits an significant increasing trend with the recycled aggregate replacement. On the other hand, the incorporation of slag increases the quasi-static compressive strength, dynamic compressive strength, and DIF. As for the energy absorption capacity, a minor enhancement is achieved with the recycled aggregate replacement, while a significant improvement is identified after the inclusion of slag. Empirical DIF formulae for compressive strength of GRAC are proposed, in which the DIF increases approximately linearly with the strain rate in a logarithmic manner.
引用
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页数:18
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