3D Printed Mortars with Combined Steel and Polypropylene Fibers (2021-12)¶
, , , Alaskhanov Arbi, , , Uvarov Valery,
Journal Article - Fibers, Vol. 9, Iss. 12
Abstract
Fibers of various origins are of great importance for the manufacture of new generation cement composites. The use of modified composite binders allows these highly efficient building materials to be used for 3D-printing of structures for various functional purposes. In this article, changes in building codes are proposed, in particular, the concept of the rheological technological index (RTI) mixtures is introduced, the hardware and method for determining which will reproduce the key features of real processes. An instrument was developed to determine a RTI value. The mixes based on composite binders and combined steel and polypropylene fibers were created. The optimally designed composition made it possible to obtain composites with a compressive strength of 93 MPa and a tensile strength of 11 MPa. At the same time, improved durability characteristics were achieved, such as water absorption of 2.5% and the F300 frost resistance grade. The obtained finegrained fiber-reinforced concrete composite is characterized by high adhesion strength of the fiber with the cement paste. The microstructure of the developed composite, and especially the interfacial transition zone, has a denser structure compared to traditional concrete. The obtained materials, due to their high strength characteristics due to the use of a composite binder and combined fiber, can be recommended for use in high-rise construction.
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0 References
13 Citations
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BibTeX
@article{leso_fedi_amra_alas.2021.3PMwCSaPF,
author = "Valeriy Stanislavovich Lesovik and Roman Fediuk and Mugahed Amran and Arbi Alaskhanov and Aleksandr Anatolevich Volodchenko and Gunasekaran Murali and Valery Uvarov and Michail Yu Elistratkin",
title = "3D Printed Mortars with Combined Steel and Polypropylene Fibers",
doi = "10.3390/fib9120079",
year = "2021",
journal = "Fibers",
volume = "9",
number = "12",
}
Formatted Citation
V. S. Lesovik, “3D Printed Mortars with Combined Steel and Polypropylene Fibers”, Fibers, vol. 9, no. 12, 2021, doi: 10.3390/fib9120079.
Lesovik, Valeriy Stanislavovich, Roman Fediuk, Mugahed Amran, Arbi Alaskhanov, Aleksandr Anatolevich Volodchenko, Gunasekaran Murali, Valery Uvarov, and Michail Yu Elistratkin. “3D Printed Mortars with Combined Steel and Polypropylene Fibers”. Fibers 9, no. 12 (2021). https://doi.org/10.3390/fib9120079.