Preview

Izvestiya vuzov. Investitsii. Stroitelstvo. Nedvizhimost

Advanced search

Prospects for the development of technology for the installation of monolithic floors with non-removable formwork from high-profile flooring

https://doi.org/10.21285/2227-2917-2026-2-334-341

EDN: XZASNO

Abstract

The purpose of this work is to identify methodological gaps in the regulatory framework and substantiate the directions of its improvement to ensure the possibility of mass implementation of the technology of floor coverings using high-profile flooring ST200-840. The relevance of systematization of regulatory requirements increases with the volume of the overlap segment of 7.6 thousand tons and the projected growth to 9 thousand tons by 2030. A set of methods was used, including a comparative analysis of Russian and foreign regulatory documents, marketing analysis of data from the consulting group "Tekart" for 2022-2024. and systematization of the results, highlighting the regulatory area of each document and the identified methodological limitations. It was found that the current documents regulate mainly the design aspects or general requirements for construction, not covering the technological operations of installation, reinforcement, sealing and concreting for sheets with a corrugation height of 200 mm; the absence of consolidated standards of labor costs and requirements for integration with BIM technologies was revealed. Comparison with foreign standards has shown a higher degree of structurality of European and North American regulatory documents. The formation of a comprehensive regulatory and methodological framework with the adaptation of foreign experience will create the basis for the mass adoption of technology and ensure the reproducibility of organizational and technological solutions in various segments of construction.

About the Authors

V. A. Ermolaev
Ufa State Petroleum Technological University
Russian Federation

Valery A. Ermolaev, Postgraduate Student

Author ID: 1261881

1 Kosmonaftov St., Ufa 450062


Competing Interests:

The authors declare no conflict of interests the publication of this article. 



Z. R. Mukhametzyanov
Ufa State Petroleum Technological University
Russian Federation

Zinur R. Mukhametzyanov, Dr. Sci. (Eng.), Professor of the Department of Roads, Bridges, and Transport Facilities

Author ID: 390723

1 Kosmonaftov St., Ufa 450062


Competing Interests:

The authors declare no conflict of interests the publication of this article. 



References

1. Mukhametzyanov Z., Oleinik P. Sustainability Method Organizational and Technological Decisions in the Construction of Industrial Complexes. E3S Web of Conferences . 2021;258:1-8. https://doi.org/10.1051/e3sconf/202125809056.

2. Ermolaev V.A. The Role of the Profiled Sheet in The Metal Consumption of the Project When Using a RunThrough System. In: Sovremennye napravleniya razvitiya tekhnologii, organizatsii i ekonomiki stroitel'stva. Sbornik statei mezhvuzovskoi nauchno-prakticheskoi konferentsii = Modern Trends in the Development of Construction Technology, Organization, and Economics. Proceedings of the Inter-University Scientific and Practical Conference. 19 April 2024, Saint Petersburg. Saint Petersburg; 2024. P. 105–110. (In Russ.). EDN: NHBPGM.

3. Ermolaev V.A., Mukhametzyanov Z.R. Deep-Ribbed Profiled Sheeting in Reinforced Concrete Floor Slabs: Challenges and Installation Technology Issues. In: Problemy stroitel'nogo kompleksa Rossii. Materialy XXIX Mezhdunarodnoi nauchno-tekhnicheskoi konferentsii, posvyashchennoi pamyati professora V.V. Babkova = Problems of the Construction Complex of Russia. Proceedings of the XXIX International Scientific and Technical Conference Dedicated to the Memory of Professor V.V. Babkov. 28 February 2025, Ufa. Ufa; 2025. P. 94–96. (In Russ.). EDN: LQEXHO.

4. Mukhametzyanov Z.R., Razyapov R.V. Mechanism of Development of Organizational Solutions Based on a Technological Interaction between Construction Works and Processes. Russian Journal of Building Construction and Architecture. 2018;1:65-71. (In Russ.). EDN: VXYOIP.

5. Dorf V.A., Krasnovsky R.O., Kapustin D.E., Rogachev K.V. Prospects for the Development of One of the Directions of Prefabricated-Cast-In-Place Method of Construction of Residence and Public Buildings. Architecture and Construction of Russia. 2013;12:10-15. (In Russ.). EDN: RPWRIF.

6. Bobrova N.E., Volkova L.V. Quality Management Systems as the Primary form of Quality Control in Construction. Molodoi uchenyi. 2019;46:54-57. (In Russ.). EDN: MGXHTQ.

7. Bezgodov I.M. On Increasing the Tensile Strength and Deformability of Concrete. Beton i zhelezobeton. 2012;1:5-8. (In Russ.).

8. Kapustin D.E. Steel-Fibrous Concrete Casing as a Bearing Structural Element. Nauchnoe obozrenie. 2015;14:77-80. (In Russ.). EDN: UMLRWH.

9. Krylov S.B., Arleninov P.D. Critical Force for Reinforced Concrete Rod. Academia. Architecture and Construction. 2012;2:136-138. (In Russ.). EDN: PYDVFV.

10. Bezgodov I.M. On The Relationships between Strength and Deformation Characteristics of Concrete under Compression, Tension, and Flexural Tension. Beton i zhelezobeton. 2012;2:2-5. (In Russ.).

11. Rongxu Liu, Ion Sucala V., Luis M., Khaled L.S. Systematic Review of Service Quality Models in Construction. Buildings. 2025;15(13):1-29. https://doi.org/10.3390/buildings15132331.

12. Zuo Caixia, Yang Jing Digital Technology of Construction Monitoring and Quality Control of Prefabricated Building Engineering. In: Novel Technology and Whole-Process Management in Prefabricated Building. Singapore: Springer, 2024. Vol. 382. P. 254–262. https://doi.org/10.1007/978-981-97-5108-2_27.

13. Elenany Y., Abbas S., Wasef M., Ali I., Beheiry S.M. A Systematic Review of Automation Technologies used in Construction Safety Management. World Journal of Science, Technology and Sustainable Development. 2024;19(3/4):267-283. https://doi.org/10.47556/J.WJSTSD.19.3-4.2024.11.


Review

For citations:


Ermolaev V.A., Mukhametzyanov Z.R. Prospects for the development of technology for the installation of monolithic floors with non-removable formwork from high-profile flooring. Izvestiya vuzov. Investitsii. Stroitelstvo. Nedvizhimost. 2026;16(2):334-341. (In Russ.) https://doi.org/10.21285/2227-2917-2026-2-334-341. EDN: XZASNO

Views: 58

JATS XML


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2227-2917 (Print)
ISSN 2500-154X (Online)