Mobile QR Code QR CODE
Export citation EndNote

References

1 
Banfill P. F. G., 1991, Rheology of Fresh Cement and Concrete, Engineering, Materials ScienceDOI
2 
Banfill P. F. G., 2005, The Rheology of Fresh Mortar-A Review, In 6th Brazilian and 1st International Symposium on Mortar Technology, pp. 73-82Google Search
3 
Barros J. A. O., Sena Cruz J., 2001, Fracture Energy of Steel Fiber-Reinforced Concrete, Mechanics of Composite Materials and Structures, Vol. 8, No. 1, pp. 29-45DOI
4 
Blanco A., Pujadas P., de la Fuente A., Cavalaro S. H. P., Aguado A., 2016, Influence of the type of fiber on the structural response and design of FRC slabs, Journal of Structural Engineering, Vol. 142, No. 9, pp. 04016054DOI
5 
Ferrández D., Saiz P., Morón C., Dorado M. G., Morón A., 2019, Inductive Method for the Orientation of Steel Fibers in Recycled Mortars, Construction and Building Materials, Vol. 222, pp. 243-253DOI
6 
Ferrara L., Park Y. D., Shah S. P., 2007, A Method for Mix-Design of Fiber-Reinforced Self-Compacting Concrete, Cement and Concrete Research, Vol. 37, No. 6, pp. 957-971DOI
7 
Hajforoush M., Kheyroddin A., and Rezaifar O., 2020, Investigation of Engineering Properties of Steel Fiber Reinforced Concrete Exposed to Homogeneous Magnetic Field, Construction and Building Materials, Vol. 252, pp. 119064DOI
8 
Javahershenas F., Gilani M. S., and Hajforoush M., 2021, Effect of Magnetic Field Exposure Time on Mechanical and Microstructure Properties of Steel Fiber-Reinforced Concrete (SFRC), Journal of Building Engineering, Vol. 35, pp. 101975DOI
9 
Kang D., Moon D., and Kim W., 2021, Changes in Rheological Properties of Mortars with Steel Slags and Steel Fibers by Magnetic Field, Materials, Vol. 14, No. 14, pp. 4005DOI
10 
Kang S. T., and Kim J. K., 2012, Investigation on the Flexural Behavior of UHPCC Considering the Effect of Fiber Orientation Distribution, Construction and Building Materials, Vol. 28, No. 1, pp. 57-65, (In Korean)DOI
11 
Lee G., and Moon D., 2023, Effect of Aligned Steel Fibers by a Solenoid on Flexural Fracture Behavior, Journal of the Korea Institute for Structural Maintenance and Inspection, Vol. 27, No. 6, pp. 193-200, (In Korean)Google Search
12 
Medeghini F., Guhathakurta J., Tiberti G., Simon S., Plizzari G. A., and Mark P., 2022, Steered Fiber Orientation: Correlating Orientation and Residual Tensile Strength Parameters of SFRC, Materials and Structures, Vol. 55, No. 10, pp. 251DOI
13 
Michels J., and Gams M., 2016, Preliminary Study on The Influence of Fibre Orientation in Fibre Reinforced Mortars, Gradevinar, Vol. 68, No. 8, pp. 645-655DOI
14 
Mu R., Qiu X., Zhao Q., and Li H., 2015, Aligned Steel Fibre Reinforced Cement-Based Composites (I): Orientation Control of Steel Fibres, Jianzhu Cailiao Xuebao (Journal of Building Materials), Vol. 18, No. 2, pp. 208-213Google Search
15 
Wallevik J. E., 2009, Rheological Properties of Cement Paste: Thixotropic Behavior and Structural Breakdown, Cement and Concrete Research, Vol. 39, No. 1, pp. 14-29DOI
16 
Zhang P., Wang C., Gao Z., and Wang F., 2023, A Review on Fracture Properties of Steel Fiber Reinforced Concrete, Journal of Building Engineering, Vol. 67, pp. 105975DOI