THE ROOFING OF AN INDUSTRIAL BUILDING WITH THE CANTILEVER FOOTING BEAM SYSTEM

Authors

  • Ivan Ivanovich Shishov Vladimir State University named after Alexander and Nicholay Stoletovs, Vladimir, Russian Federation
  • Evgenij Aleksandrovich Smirnov Vladimir State University named after Alexander and Nicholay Stoletovs, Vladimir, Russian Federation
  • Maksim Aleksandrovich Ryazanov Vladimir State University named after Alexander and Nicholay Stoletovs, Vladimir, Russian Federation

Keywords:

paired columns, cantilever footing beam system, beams of the first and the second types, footing beams, outer reinforcement

Abstract

The paper is focused on the roofing of an industrial building resting on the cantilever beam system consisting of two types of beams. The first beams are mounted on paired columns(two columns with 3.6 meter spacing). They are 6.4 meters long and have cantilevers of 1.4 mat both sides. The second beams rest on cantilevers of the first beams and act as a support of sloping beams with the span of 24 m for 6 meter ribbed plates. The 24 meter step of transverse coordinate axes of the building is provided. The authors also consider the second option of covering, where adjoining footing beams are joined together on the top by external reinforcement bars, increasing their strength, rigidity and its cracking resistance. The limit state analysis of all beams is conducted. The paper presents the engineering and economic comparison of the suggested options of the building roofing with 12 meter column spacing and ribbed plates 6 m long. 

Author Biographies

Ivan Ivanovich Shishov, Vladimir State University named after Alexander and Nicholay Stoletovs, Vladimir, Russian Federation

Кандидат технических наук, профессор, доцент кафедры строительных конструкций

Evgenij Aleksandrovich Smirnov, Vladimir State University named after Alexander and Nicholay Stoletovs, Vladimir, Russian Federation

Кандидат технических наук, профессор, доцент кафедры строительных конструкций

Maksim Aleksandrovich Ryazanov, Vladimir State University named after Alexander and Nicholay Stoletovs, Vladimir, Russian Federation

Аспирант кафедры строительных конструкций

References

Roshchina S.I., Shishov I.I., Kaptsova E.N., Ezzi Kh. [Building Coating on Precast-Monolithic Roof Con-structions]. Beton i zhelezobeton [Concrete and Reinforced Concrete], 2013. no.3, pp. 30–31. (in Russ.).

Shishov I.I., Roshchina S.I., Ezzi Kh., Ryazanov M.A. [Truss of Linear and Planar Elements and How They Work Together with the Hob.]. Beton i zhelezobeton – vzglyad v budushchee: nauchnye trudy III Vse-rossiyskoy (II Mezhdunarodnoy) konferentsii po betonu i zhelezobetonu (Moskva, 12 – 16 maya 2014 g.): Teoriya zhelezobetona. Zhelezobetonnye konstruktsii. Raschet i konstruirovanie [Concrete and Reinforced Concrete - a Look into the Future: the All-Russian Scientific Works III (II International) Conference on Concrete and Rein-forced Concrete (Moscow, 12 - 16 May 2014). The Theory of Reinforced Concrete. Reinforced Concrete Struc-tures. Calculation and Design]. Moscow, MGSU Publ., 2014, vol. 1, pp. 407–413. (in Russ.).

Roshchina S.I., Shishov I.I., Ezzi Kh., Ryazanov M.A.. Zhelezobetonnoe pokrytie odnoetazhnogo pro-izvodstvennogo zdaniya [Concrete Covers Single-Storey Industrial Building]. Patent no. 147222 RF, 2014.

Shishov I.I., Roshchina S.I., Ryazanov M.A., Ezzi Kh. [Supporting Structures Covering Industrial Building at Step Transverse Frames 15 or 18 Meters]. Beton i zhelezobeton [Concrete and Reinforced Concrete], 2015. no. 3, pp. 13–16. (in Russ.).

Roshina S.I., Shishov I.I., Ryazanov M.A, Ezzi Kh. Zhelezobetonnoe pokrytie odnoetazhnogo proizvod-stvennogo zdaniya na sparennykh kolonnakh [Concrete Covers Single-Storey Industrial Building on the Twin Towers]. Patent RF, no. 153641, 2015.

Shishov I.I., Drogina A.O., Kovalishina T.V. [Covering an Industrial Building on the Twin Towers]. Beton i zhelezobeton [Concrete and Reinforced Concrete], 2013, no. 5, pp. 14–15. (in Russ.).

Kustikova Yu.O., Rimshin V.I., Shubin L.I. [Practical Recommendations and Feasibility Study for the Use of Composite Reinforcement in Concrete Structures of Buildings and Constructions]. Zhilishchnoe stroitel'stvo [Housing Construction], 2014, no. 7, pp. 14–18. (in Russ.).

Nikulin A.I. [To Build a Computational Model to Determine the Fracture Toughness of Reinforced Con-crete Beams Based on Energy Relations]. Izvestiya OrelGTU. Ser. Building and Transport, 2004, no. 3–4, pp. 78– 85. (in Russ.).

Nikulin A.I. [To Clarify the Value of the Maximum Relative Deformation of Concrete in the Com-pressed Zone of Bent Reinforced Concrete Elements]. Promyshlennoe i grazhdanskoe stroitel'stvo [Industrial and Civil Engineering], 2014, no. 8, pp. 12–15. (in Russ.).

Nikulin A.I., Frolov N.V., Nikulina Yu.A. [Crack Bent Reinforced Concrete Elements with Regard to the Use Of Different Combinations of the Extended Area of Steel and Fiberglass Reinforcement]. Beton i zhelezobet-on [Concrete and Reinforced Concrete], 2015, no. 1, pp. 18–23. (in Russ.).

SP 63.13330.2012. [Concrete and Reinforced Concrete Structures. The Main Provisions. The Updated Edition of SNIP 52-01-2003]. Moscow, 2012. (in Russ.).

Berdichevskiy G.I. Spravochnik proektirovshchika. Tipovye zhelezobetonnye konstruktsii zdaniy i sooruzheniy dlya promyshlennogo stroitel'stva [Designer Directory. Typical Reinforced Concrete Constructions of Buildings and Structures for Industrial Buildings]. Moscow, Stroyizdat Publ., 1974. 398 p.

Published

2017-08-07