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Strength study of Leimet ABB+ 400 pile joints for precast reinforced concrete piles

https://doi.org/10.37538/2224-9494-2022-2(33)-74-82

Abstract

Introduction. The technology of connecting precast reinforced concrete piles using pile joints is a promissing method in construction. According to some previous studies, the use of Leimet ABB+ pile joints provides for a significant reduction in material and labor intensity, as well as the time required for connecting the piles under sufficiently high strength and durability. Currently, the application of this technology is limited due to the insufficient knowledge of mechanical characteristics of pin connections. This article presents the results of strength tests of Leimet ABB+ pile joints for recast reinforced concrete piles.

Aim. Experimental testing of the strength parameters of Leimet ABB+ pile joints under compression, tensile, transverse shear, and bending.

Methods and materials. Experiments were performed using test samples represented by two fragments of recast reinforced concrete piles of the 1.011.1-10 standard, which were joined by a 4-lock Leimet ABB+ 400 pile joint. Loading tests of the samples were carried out in accordance with the GOST 8829-2018.

Results. The qualitative and quantitative destruction parameters of the test samples were obtained. The destruction of all the test samples occurred along the concrete body of piles with no signs of destruction of the metal pin connection. In addition, no signs of concrete indents in the area of the pin connection were observed.

Conclusions. Leimet ABB+ 400 pile joints were concluded to be of the uniform strength to the concrete pile body under the considered conditions. The test results of the pile joint strength are applicable when developing design projects. 

About the Authors

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

Andrey V. Buchkin, Cand. Sci. (Engineering), Deputy Head of the Laboratory of Corrosion and Durability,

2nd Institutskaya str., 6, bld. 5, Moscow, 109428

 



K. L. Kudyakov
Research Institute of Concrete and Reinforced Concrete (NIIZHB) named after A.A. Gvozdev, JSC Research Center of Construction; National Research Moscow State University of Civil Engineering
Russian Federation

Konstantin L. Kudyakov , Cand. Sci. (Engineering), Head of the Sector of the Laboratory of Corrosion and Durability, 2nd Institutskaya str., 6, bld. 5, Moscow, 109428;

associate professor of the Department of Reinforced Concrete and Stone Structures, Yaroslavskoye Shosse, 26, Moscow, 129337



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

Sergey D. Epikhin, engineer at the Laboratory of Corrosion and Durability of Concrete and Reinforced Concrete Structures,

2nd Institutskaya str., 6, bld. 5, Moscow, 109428



S. K. Khlebnikov
Research Institute of Concrete and Reinforced Concrete (NIIZHB) named after A.A. Gvozdev, JSC Research Center of Construction; National Research Moscow State University of Civil Engineering
Russian Federation

Sergey K. Khlebnikov, engineer at the Laboratory of Corrosion and Durability of Concrete and Reinforced Concrete Structures, 2nd Institutskaya str., 6, bld. 5, Moscow, 109428;

student, Yaroslavskoye Shosse, 26, Moscow, 129337



References

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7. Stepanova V.F., Buchkin A.V., Kudyakov K.L., Moiseeva N.A. Assessment of the influence of an aggressive environment on the durability of the Leimet ABB+ 400 pin joint for composite reinforced concrete piles. Vestnik NIC Stroitel’stvo = Bulletin of Science and Research Center of Construction. 2022;32(1):65–81 (in Russian). https://doi.org/10.37538/2224-9494-2022-1(32)-65-81

8. Series 1.011.1-10. The piles are driven reinforced concrete. Issue 8. Composite piles of solid square cross-section with non-stressed reinforcement. Working drawings. Moscow: TSITP Gosstroy of the USSR; 1989 (in Russian).

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10. State Standard 8829-2018 Reinforced concrete and factory-made concrete construction products. Methods of loading tests. Moscow: Standartinform Publ.; 2019 (in Russian).


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For citations:


Buchkin A.V., Kudyakov K.L., Epikhin S.D., Khlebnikov S.K. Strength study of Leimet ABB+ 400 pile joints for precast reinforced concrete piles. Bulletin of Science and Research Center of Construction. 2022;33(2):74-82. (In Russ.) https://doi.org/10.37538/2224-9494-2022-2(33)-74-82

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ISSN 2224-9494 (Print)
ISSN 2782-3938 (Online)