Preview

Building and Reconstruction

Advanced search

PARAMETRIC RESEARCH OF RESTRAINED STRAINS AND STRESSES OF SELF-STRESSED FIBER-REINFORCED CONCRETE AT THE STAGE OF EXPANSION

https://doi.org/10.33979/2073-7416-2023-108-4-81-92

Abstract

One of the main advantages of self-stressed concrete is its ability to compensate for one of the main disadvantages inherent in mineral binders – shrinkage strains. However, approaches to predicting the properties of self-stressed concrete are not universal, since they are based mainly on phenomenological approaches and empirical dependencies. The main approaches to predicting strains and stresses arising in expansive concrete are energy- and deformation approaches. A number of researchers confirm the effectiveness of applying the deformation approach to determine intrinsic strains and stresses. Modification of the model for determining its own stresses and strains made it possible to move from the case of uniaxial bar reinforcement to two- and three-axis-limited elements. Based on the provisions of the deformation approach, a deformation model was proposed to determine the intrinsic strains and stresses of self-stressed fiber-reinforced concrete. The main prerequisites and assumptions of the proposed model are formulated. A block diagram of the algorithm of the iterative procedure is given, which makes it possible to calculate the intrinsic strains and stresses of self-stressed fiber-reinforced concrete. Parametric studies of self-strains and stresses of self-stressed fiberreinforced concrete at the stage of expansion were carried out. The normalized dependences of the bounded strains on the varied parameters are presented. The area of effective use of steel fibers to achieve "binding" effect of free expansion in self-stressed concrete of different energy-activity has been determined. Influence of change of introduced fiber amount on development of bound strains of selfstressed concrete at different time intervals has been determined. The obtained results can be used in design, educational and research institutions.

About the Authors

I. P. Pavlova
Brest State Technical University
Belarus

Pavlova Inessa P., PhD in technical sciences, associated professor, associated professor of the department of concrete technology and building materials

Brest



I. V. Belkina
Yanka Kupala State University of Grodno
Belarus

Belkina Irina V., master in technical sciences, senior lecturer of the department of construction production

Grodno



References

1. Mikhailov V., Litver S. Rasshiryayushchiesya i napryagayushchiesya cementy i samonapryazhyonnye konstrukcii [Expansive and self-stressing cements and self-stressed reinforced structures]. Moscow: Stroyizdat, 1974. 389 p. (rus)

2. Tsuji Y. Methods of estimating chemical prestress and expansion distribution in expansive concrete subjected to uniaxial restraint. Concrete Library of JSCE, 1984. No. 3. Pp. 131-143.

3. Tur V., Semianiuk V. Modeli, primenyaemye dlya rascheta svyazannyh deformacij i samonapryazhenij v elementah iz napryagayushchego betona [Models for restrained strains and self-stressing stresses in the members made of expansive concrete calculation]. Vestnik Brestskogo gosudarstvennogo tekhnicheskogo universiteta. Seriya: Stroitel'stvo i arhitektura. 2016. No. 1. Pp. 53–69. (rus)

4. Ito H., Maruyama I., Tanimura M., Sato R. Early age deformation and resultant induced stress in expansive high strength concrete. Journal of Advanced Concrete Technology. 2004;(2). Pp. 155–174.

5. Semianiuk V., Tur V., Herrador M. F. Early age strains and self-stresses of Expansive concrete members under uniaxial restraint conditions. Construction and Building Materials. 2017;(131). Pp. 39–49.

6. Sannikava V. Tur V. The modified early age strains development model for the case of two-way restraint conditions. MATEC Web of Conferences. 2021. Pp. 350.

7. Chang X., Huang C., Zhang P. Expansive behaviors of self-stressing concrete under different restraining conditions. Journal of Wuhan University of Technology-Mater. Sci. Ed., 26(4). 2011. Pp. 780–785.

8. Bondarenko V. M. Proektirovanie samonapryazhyonnyh staletrubobetonnyh elementov [Design of selfstressing CFST elements]. Vestnik Brestskogo gosudarstvennogo tekhnicheskogo universiteta. Seriya: Stroitel'stvo i arhitektura . 2012. No. 1. Pp. 85–89. (rus)

9. Alekseev V.A., Bazhenov Yu.M., Bazhenova S.I., Bazhenova O.Yu., Bisembaev R.S., Mironchuk N.S. Additive having hydraulic activity forshotcrete. [Additives with independent hydraulic activity for sprinkling]. BST: Bulletin of Construction Equipment. 2018; 8(1008):61-63. (rus)

10. Elsufieva M. S., Soloviev V. G., Buryanov A. F. Evaluation of the long-term change in the properties of steel fiber concrete with expanding additives [Ocenka dolgosrochnogo izmeneniya svojstv stalefibrobetonov s rasshiryayushchimi dobavkami]. Construction Materials. 2015. No. 7. Pp. 21-23. (rus)

11. He H. A., Wang B. X., Lin J. T. Performance on steel fiber reinforced self-stressing concrete. Key Engineering Materials. Trans Tech Publications Ltd. 2009. Vol. 400. Pp. 427-432. doi:10.4028/www.scientific.net/kem.400-402.427.

12. Harchenko A.I. [et al.]. The use of expanding cements for concrete spraying in tunnel construction. [Primenenie rasshiryayushchihsya cementov dlya nabryzgbetona v tonnel'nom stroitel'stve]. Vestnik MGSU. 2019. Vol. 14. No. 11 (134). Pp. 1438-1448. (rus)

13. Sengul O. Mechanical properties of slurry infiltrated fiber concrete produced with waste steel fibers. Construction and Building Materials. 2018. Vol. 186. Pp. 1082–1091. doi:10.1016/j.conbuildmat.2018.08.042

14. Elsufieva M.S., Soloviev V.G., Buryanov A.F. Primenenie rasshiryayushchihsya dobavok v stalefibrobetone [The use of expanding additives in steel fiber concrete]. Construction Materials. 2014. No. 8. Pp. 60- 63. (rus)

15. Pavlova I.P., Belkina I.V. Sobstvennye deformacii napryagayushchego betona s dispersnym armirovaniem: chast' 1. Modelirovanie [The restrained expansion strains of self-stressed concrete with disperse reinforcement: part 1. Modeling]. News of Higher Educational Institutions. Construction. 2022. No. 9. Pp. 5–17. (rus) doi:10.32683/0536-1052-2022-765-9-5-17


Review

For citations:


Pavlova I.P., Belkina I.V. PARAMETRIC RESEARCH OF RESTRAINED STRAINS AND STRESSES OF SELF-STRESSED FIBER-REINFORCED CONCRETE AT THE STAGE OF EXPANSION. Building and Reconstruction. 2023;(4):81-92. (In Russ.) https://doi.org/10.33979/2073-7416-2023-108-4-81-92

Views: 133


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


ISSN 2073-7416 (Print)