Effect of different binders on cold-bonded artificial lightweight aggregate properties

被引:32
作者
Vali, Kolimi Shaiksha [1 ]
Murugan, S. Bala [1 ]
机构
[1] Vellore Inst Technol, Sch Civil Engn, Dept Struct & Geotech Engn, Vellore 632014, Tamil Nadu, India
关键词
metakaolin and ferrochrome ash; aggregates/recycled aggregates; cement; construction materials; fly ash/slag; furnace slag; lightweight aggregate (LWA); silica fume; FLY-ASH; SHRINKAGE CRACKING; CONCRETE; STRENGTH; PERFORMANCE; DURABILITY;
D O I
10.12989/acc.2020.9.2.183
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The present investigation is to identify an optimum mix combination amongst 28 different types of artificial lightweight aggregates by pelletization method with aggregate properties. Artificial aggregates with different combinations were manufactured from fly ash, cement, hydrated lime, ground granulated blast furnace slag (GGBFS), silica fume, metakaolin, sodium bentonite and calcium bentonite, at a standard 17 minutes pelletization time, with 28% of water content on a weight basis. Further, the artificial aggregates were air-dried for 24 hours, followed by hardening through the cold-bonding (water curing) process for 28 days and then testing with different physical and mechanical properties. The results found the lowest impact strength value of 16.5% with a cement-hydrated lime (FCH) mix combination. Moreover, the lowest water absorption of 16.5% and highest individual pellet crushing strength of 36.7 MPa for 12 mm aggregate with a hydrated lime-GGBFS (FHG) mix combination. The results, attained from different binder materials, could be helpful for manufacturing high strength artificial aggregates.
引用
收藏
页码:183 / 193
页数:11
相关论文
共 46 条
[31]   The effects of aggregate properties on lightweight concrete [J].
Lo, Tommy Y. ;
Tang, W. C. ;
Cui, H. Z. .
BUILDING AND ENVIRONMENT, 2007, 42 (08) :3025-3029
[32]  
Lo TY, 2004, PROCEEDINGS OF THE INTERNATIONAL WORKSHOP ON SUSTAINABLE DEVELOPMENT AND CONCRETE TECHNOLOGY, P113
[33]   Effect of curing method on characteristics of cold bonded fly ash aggregates [J].
Manikandan, R. ;
Ramamurthy, K. .
CEMENT & CONCRETE COMPOSITES, 2008, 30 (09) :848-853
[34]  
Priyadharshini P., 2011, International Journal of Civil and Structural Engineering, V2, P493
[35]  
Shaiksha Vali K., 2019, INT J ENG ADV TECHNO, V9, P385, DOI 10.35940/ijeat.A9376.109119
[36]   Potential use of mine tailings and fly ash in concrete [J].
Sunil, B. M. ;
Manjunatha, L. S. ;
Ravi, Lolitha ;
Yaragal, Subhash C. .
ADVANCES IN CONCRETE CONSTRUCTION, 2015, 3 (01) :55-69
[37]   Fresh and hardened properties of concrete containing cold bonded aggregates [J].
Thomas, Job ;
Harilal, B. .
ADVANCES IN CONCRETE CONSTRUCTION, 2014, 2 (02) :77-89
[38]   Properties of autoclaved lightweight aggregate concrete [J].
Topcu, Ilker Bekir ;
Uygunoglu, Tayfun .
BUILDING AND ENVIRONMENT, 2007, 42 (12) :4108-4116
[39]  
Vali K. S., 2017, Int. J. Civ. Eng. Technol, V8, P360
[40]   IMPACT OF NANO SIO2 ON THE PROPERTIES OF COLD-BONDED ARTIFICIAL AGGREGATES WITH VARIOUS BINDERS [J].
Vali, Kolimi Shaiksha ;
Murugan, Bala .
INTERNATIONAL JOURNAL OF TECHNOLOGY, 2019, 10 (05) :897-907