Post-fire investigation on the mechanical properties and physical characteristics of fibre-reinforced geopolymer concrete

被引:4
|
作者
Prasad Burle, Vijaya [1 ]
Kiran, Tattukolla [1 ]
Anand, N. [1 ]
Andrushia, Diana [2 ]
Al-Jabri, Khalifa [3 ]
机构
[1] Karunya Inst Technol & Sci, Dept Civil Engn, Coimbatore, India
[2] Karunya Inst Technol & Sci, Dept ECE, Coimbatore, India
[3] Sultan Qaboos Univ, Dept Civil & Architectural Engn, Muscat, Oman
关键词
Steel fibre; Basalt fibre; Polypropylene fibre; Geopolymer concrete; Elevated temperature; Mechanical properties; HIGH-STRENGTH CONCRETE; FLY-ASH; BASALT FIBER; HIGH-TEMPERATURE; FIRE RESISTANCE; BEHAVIOR; COMPOSITE;
D O I
10.1108/JSFE-01-2023-0016
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
PurposeThe construction industries at present are focusing on designing sustainable concrete with less carbon footprint. Considering this aspect, a Fibre-Reinforced Geopolymer Concrete (FGC) was developed with 8 and 10 molarities (M). At elevated temperatures, concrete experiences deterioration of its mechanical properties which is in some cases associated with spalling, leading to the building collapse.Design/methodology/approachIn this study, six geopolymer-based mix proportions are prepared with crimped steel fibre (SF), polypropylene fibre (PF), basalt fibre (BF), a hybrid mixture consisting of (SF + PF), a hybrid mixture with (SF + BF), and a reference specimen (without fibres). After temperature exposure, ultrasonic pulse velocity, physical characteristics of damaged concrete, loss of compressive strength (CS), split tensile strength (TS), and flexural strength (FS) of concrete are assessed. A polynomial relationship is developed between residual strength properties of concrete, and it showed a good agreement.FindingsThe test results concluded that concrete with BF showed a lower loss in CS after 925 degrees C (i.e. 60 min of heating) temperature exposure. In the case of TS, and FS, the concrete with SF had lesser loss in strength. After 986 degrees C and 1029 degrees C exposure, concrete with the hybrid combination (SF + BF) showed lower strength deterioration in CS, TS, and FS as compared to concrete with PF and SF + PF. The rate of reduction in strength is similar to that of GC-BF in CS, GC-SF in TS and FS.Originality/valuePerformance evaluation under fire exposure is necessary for FGC. In this study, we provided the mechanical behaviour and physical properties of SF, PF, and BF-based geopolymer concrete exposed to high temperatures, which were evaluated according to ISO standards. In addition, micro-structural behaviour and linear polynomials are observed.
引用
收藏
页码:147 / 174
页数:28
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