Preview

Concrete and Reinforced Concrete

Advanced search

Deformation characteristics of lightweight concrete based on granular foam glass ceramics

https://doi.org/10.31659/0005-9889-2022-612-613-4-5-38-45

Abstract

The results of studies of the main deformation properties of heat-insulating and structural-heat-insulating lightweight concretes on granulated foam glass-ceramic with a density of 500 to 800 kg/m3, as well as structural lightweight concretes with a density of up to 1700 kg/m3 of optimal compositions are presented. Various dependencies on the evaluation of the experimental data obtained are analyzed and recommendations are given for inclusion in regulatory documents, in particular, in SP 351.1325800.2017 “Concrete and reinforced concrete structures made of light concrete. Design rules”.

About the Authors

V. N. Strotskiy
Research Institute of Concrete and Reinforced Concrete named after A.A. Gvozdev (NIIZHB), JSC Research Center of Construction
Russian Federation

Candidate of Sciences (Engineering)

e-mail: np.ots@mail.ru 



V. I. Savin
Research Institute of Concrete and Reinforced Concrete named after A.A. Gvozdev (NIIZHB), JSC Research Center of Construction
Russian Federation

Candidate of Sciences (Engineering)

e-mail: vlsavin@inbox.ru 



V. V. Poletaev
Research Institute of Concrete and Reinforced Concrete named after A.A. Gvozdev (NIIZHB), JSC Research Center of Construction
Russian Federation

Candidate of Sciences (Engineering)

e-mail: poletaev.vladimir.47@mail.ru 



References

1. Buzhevich G.A. Legkie betony na poristykh zapolnitelyakh [Light concrete on porous aggregates]. Moscow: Stroiizdat. 1970. 272 p.

2. Gnatus N.A. Datsizitobeton [Datsizitobeton]. Moscow: Nedra. 1991. 124 p.

3. Davidyuk A.N. Legkie konstruktsionno-teploizolyatsionnye betony na steklovidnykh poristykh zapolnitelyakh [Lightweight structural and thermal insulation concretes on vitreous porous aggregates]. Moscow: Krasnaya Zvezda. 2008. 208 p.

4. Milykh T.I. Structural and heat-insulating lightweight concretes with an average density of 700–900 kg/m<sup>3</sup>. Cand. Diss. (Engineering). Moscow. 1986.

5. Nesvetaev G.V. Modul’ uprugosti betona. Ch. I. Tsementy, betony, stroitel’nye rastvory i sukhie smesi. Pod red. P.G. Komokhova [Modulus of elasticity of concrete. Part I. Cements, concretes, mortars and dry mixes. Edited by P.G. Komokhov]. Saint Petersburg: Professional. 2007, pp. 282–298.

6. Chernousov N.N., Bondarev B.A., Sturova V.A., Bondarev A.B., Liventseva A.A. Аnalytical dependences of the effect of material density on the strength and deformability of structural concrete under axial compression. <i>Stroitel’nye Materialy</i> [Construction Materials]. 2022. No. 5, pp. 58–67. (In Russian). DOI: https://doi.org/10.31659/0585-430X-2022-802-5-58-67

7. Gornov A.A. Industrial housing construction on the basis of light concrete. <i>Zhilishchnoe Stroitel’stvo</i> [Housing Construction]. 2021. No. 5, pp. 35–40. (In Russian). DOI: https://doi.org/10.31659/0044-4472-2021-5-35-40


Review

For citations:


Strotskiy V.N., Savin V.I., Poletaev V.V. Deformation characteristics of lightweight concrete based on granular foam glass ceramics. Concrete and Reinforced Concrete. 2022;612-613(4-5):38-45. (In Russ.) https://doi.org/10.31659/0005-9889-2022-612-613-4-5-38-45

Views: 42


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


ISSN 0005-9889 (Print)
ISSN 3034-1302 (Online)