Open Access

Comparative Analysis of the Coarse Aggregate Shapes used to Manufacturing High Performance Self-Compacting Concrete


Cite

[1] Al-Rousan T., Masad E., Tutumluer E., Pan T., Evaluation of image analysis techniques for quantifying aggregate shape characteristics. Construction and Building Materials, 2007, 978–990.10.1016/j.conbuildmat.2006.03.005Search in Google Scholar

[2] Bangaru R.S., Das A., Aggregate shape characterization in frequency domain. Construction and Building Materials, 2012, 554–560.10.1016/j.conbuildmat.2012.02.063Search in Google Scholar

[3] Gawenda T., Układ urządzeń do produkcji kruszyw foremnych, AGH w Krakowie, Zgłoszenie nr P. 408045 z dn. 2014-04-28, Biuletyn Urzędu Patentowego, 2015 nr 23.Search in Google Scholar

[4] Krishnamurthy Pandurangan, Kothandaraman S., Effect of Coarse Aggregate Size And Shape on the Strength and Flow Characteristics of Self-compacting Concrete. ICI Journal, 2012.Search in Google Scholar

[5] http://fiji.sc [access: 10.06.2018].Search in Google Scholar

[6] Junaid Mansoor, Syyed Adnan Raheel Shah, Mudasser Muneer Khan, Abdullah Naveed Sadiq, Muhammad Kashif Anwar, Muhammad Usman Siddiq, Hassam Ahmad, Analysis of Mechanical Properties of Self Compacted Concrete by Partial Replacement of Cement with Industrial Wastes under Elevated Temperature. Applied Sciences, 2018, 8, 364.10.3390/app8030364Search in Google Scholar

[7] Karamloo M., Mazloom M., Payganeh G., Effects of maximum aggregate size on fracture behaviors of self-compacting lightweight concrete, Construction and Building Materials, 2016, 508–515.10.1016/j.conbuildmat.2016.07.061Search in Google Scholar

[8] Kostrzanowska-Siedlarz A., Gołaszewski J., Rheological properties of High Performance Self-Compacting Concrete: Effects of composition and time. Construction and Building Materials, 2016, 705–715.10.1016/j.conbuildmat.2016.04.027Search in Google Scholar

[9] Kozioł W., Ciepliński A., Machniak Ł., Borcz A., Kruszywa w budownictwie. Cz. 1. Kruszywa naturalne, Nowoczesne Budownictwo Inżynieryjne, 2015, 98–100.Search in Google Scholar

[10] Kuo C.Y., Freeman R., Imaging indices for quantification of shape, angularity, and surface texture of aggregates, Transportation Research Record, 2000, 57–65.10.3141/1721-07Search in Google Scholar

[11] Małolepszy J., Deja J., Brylicki W., Gawlicki M., Technologia betonu – metody badań, Uczelniane Wydawnictwa Naukowo-Dydaktyczne AGH, Kraków 2000.Search in Google Scholar

[12] McHugh M.L., The Chi-square test of independence, Biochemia Medica, 2013, 23 (2), 143–149.10.11613/BM.2013.018Search in Google Scholar

[13] Miller R., Siegmund D., Maximally selected Chi-square statistics, Biometrics, 1982, 38, 1011–1016.10.2307/2529881Search in Google Scholar

[14] Navarrete I., Lopez M., Understanding the relationship between the segregation of concrete and coarse aggregate density and size, Construction and Building Materials, 2017, 741–748.10.1016/j.conbuildmat.2017.05.185Search in Google Scholar

[15] Okamura H., Ouchi M., Self-compacting concrete, Advanced Concrete Technology, 2003, 5–15.10.3151/jact.1.5Search in Google Scholar

[16] Ostrowski K., The influence of coarse aggregate shape on the properties of high-performance, self-compacting concrete, Technical Transaction, 2-B/2017, 25–33.Search in Google Scholar

[17] Ostrowski K., Sadowski Ł., Stefaniuk D., Wałach D., Gawenda T., Oleksik K., Usydus I., The effect of the shape of the coarse aggregate on the properties of self-compacting high-performance fibre-reinforced concrete, Materials – in press.Search in Google Scholar

[18] Ostrowski K., Sadowski Ł., Wałach D., Gawenda T., The influence of coarse aggregate shape on the properties of self-compacting high-performance fibre-reinforced concrete, RILEM Publications S. A. R. L., 2017.10.3390/ma11081372611991330087261Search in Google Scholar

[19] PN-EN 933-4:2008 Badania geometrycznych właściwości kruszyw. Część 4: Oznaczanie kształtu ziarn. Wskaźnik kształtu, 2008.Search in Google Scholar

[20] Rajan B., Singh D., Understanding influence of crushers on shape characteristics of fine aggregates based on digital image and conventional techniques, Construction and Building Materials, 2017, 833–843.10.1016/j.conbuildmat.2017.06.058Search in Google Scholar

[21] Smarzewski P., Barnat-Hunek D., Jezierski W., The possibility of using boiler slag as coarse aggregate in high strength concrete. KSCE Journal of Civil Engineering, 2017, 22, 1816–1826.10.1007/s12205-017-1377-0Search in Google Scholar

[22] Xianglin Gu, Yvonne Tran, Li Hong, Quantification of coarse aggregate shape in concrete, Front. Struct. Civ. Eng, 2014, 8, 308–321.10.1007/s11709-014-0266-6Search in Google Scholar

[23] Xiaoxin Zhang, Gonzalo Ruiz, Manuel Tarifa, David Cendón Francisco Gálvez, Waleed H. Alhazmi, Dynamic Fracture Behavior of Steel Fiber Reinforced Self Compacting Concretes (SFRSCCs), Materials, 2017, 10: 1270.10.3390/ma10111270570621729113095Search in Google Scholar