Effect of Constructional Measures on the Total and Local Loss Stability of the Thin-Walled Profile under Transverse Bending

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Work is devoted to the actual topic - local buckling of light steel thin-walled sections. Method of calculating stability in thin-walled structures described in the work. The mechanisms of local buckling under transverse bending considered by authors.

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982-990

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September 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] I.V. Astahov, Prostranstvennaya ustoychivost elementov konstruktsiy iz holodnognutyih profiley, St. -Petersburg, 2006, 123p.

Google Scholar

[2] A.G. Belyiy, Deformatsionnyiy raschet i ustoychivost tonkostennyih prizmaticheskih sterzhney proizvolnogo profilya szhatyih s dvuhosnyim ekstsentrisitetom, Dissertation for the degree of Doctor of Science in Technology, St. -Petersburg, 2000, 114p.

Google Scholar

[3] N.I. Vatin, E.N. Zhmarin, V.G. Kurazhova, K. Yu. Usanova, Konstruirovanie zdaniy i sooruzheniy. Legkie stalnyie tonkostennyie konstruktsii: uchebnoe rukovodstvo, St. -Petersburg, 2012, 266p.

Google Scholar

[4] V.Z. Vlasov, Izbrannyie trudyi T. 2, Moskow, AN SSSR, 1963, 507p.

Google Scholar

[5] V.Z. Vlasov, Tonkostennyie uprugie sterzhni (prochnost, ustoychivost, kolebaniya), Moskow, Stroyizdat, 1940, 276p.

Google Scholar

[6] G.A. Gurvits, Izgib i ustoychivost nelineyno-deformiruemyih plastinchatyih sistem, Moskow, 1985, 136p.

Google Scholar

[7] A. Yu. Kuznetsov, Prochnost i prostranstvennaya ustoychivost sostavnyih sterzhnevyih elementov konstruktsiy iz holodnognutyih profiley, Dissertation for the degree of Doctor of Science in Technology, St. -Petersburg, 2013, 175p.

Google Scholar

[8] N.A. Kuzmin, P.A. Lukash, I.E. Mileykovskiy, Raschet konstruktsiy iz tonkostennyih sterzhney i obolochek, Moskow, Gosstroyizdat, 1960, 264p.

Google Scholar

[9] A.V. Perelmuter, V.I. Slivker, Ustoychivost ravnovesiya konstruktsiy i rodstvennyie problemyi, Moskow, SCAD Soft, 2011, 388p.

Google Scholar

[10] A.V. Perelmuter, V.I. Slivker, Raschetnyie modeli sooruzheniy i vozmozhnost ih analiza, Moskow, DMK Press, 2002, 618p.

Google Scholar

[11] A.V. Perelmuter, V.V. Yurchenko, O raschete prostranstvennyih konstruktsiy iz tonkostennyih sterzhney otkryitogo profilya, Stroitelnaya mehanika i raschet sooruzheniy 6(2012) pp.18-25.

Google Scholar

[12] V.V. Yurchenko, Proektirovanie karkasov zdaniy iz tonkostennyih holodnognutyih profiley v srede «SCAD Office», Inzhenerno-stroitelnyiy zhurnal 8(2010) pp.38-46.

Google Scholar

[13] D. Dubina, V. Ungureanu, I. Szabo, Codification of imperfections for advanced finite analysis of cold-formed steel members, Proceedings of the 3rd ICTWS (2001) pp.179-186.

DOI: 10.1016/b978-008043955-6/50017-3

Google Scholar

[14] P. Keerthan, M. Mahendran, Thermal performance of load bearing cold-formed steel walls under fire conditions using Numerical studies, Journal of Constructional Steel Research 80(2013) pp.412-428.

DOI: 10.1260/2040-2317.5.3.261

Google Scholar

[15] W.T. Koiter, The effective width of flat plates for various longitudinal edge conditions at loads far beyond the buckling load, Rep. №5287, National Luchtvaart Laboratorium (2012) pp.365-374.

Google Scholar

[16] C.N. Louise, A.M. Md Othuman, M. Ramli, Performance of lightweight thin-walled steel sections: theoretical and mathematical considerations, Applied Science Research 3(5), 2012, pp.2847-2859.

Google Scholar

[17] N.I. Vatin, T. Nazmeeva, R. Guslinscky, Problems of cold-bent notched c-shaped profile members, Advanced Materials Research Vols. 941-944 (2014), pp.1871-1875.

DOI: 10.4028/www.scientific.net/amr.941-944.1871

Google Scholar

[18] N.I. Vatin, J. Havula, L. Martikainen, A. Sinelnikov, A. Orlova, S. Salamakhin, Thin-walled cross-sections and their joints: tests and FEM-modelling, Advanced Materials Research Vols. 945-949 (2014), pp.1211-1215.

DOI: 10.4028/www.scientific.net/amr.945-949.1211

Google Scholar

[19] V.A. Rybakov, Primeneniye polusdvigovoy teorii V.I. Slivkera dlya analiza napryazhenno-deformirovannogo sostoyaniya sistem tonkostennykh sterzhney. Diss. na soisk. uchen. step. k. t. n.: Spets. 01. 02. 04. S-Pb., 2012. 184 p.

Google Scholar

[20] P.N. Nedviga, V.A. Rybakov, Empiricheskiye metody otsenki nesushchey sposobnosti stalnykh tonkostennykh prosechno-perforirovannykh balok i balok so sploshnoy stenkoy / Inzhenerno-stroitelnyy zhurnal. 2009. № 8(10). pp.27-30.

Google Scholar

[21] V.A. Rybakov, Osnovyi stroitelnoy mehaniki legkih stalnyih tonkostennyih konstruktsiy: uchebnoe posobie, St. -Petersburg, 2011, 207p.

Google Scholar

[22] M.V. Antonova, D.V. Glushko, S.V. Belyaeva, L. Pakrastinsh, A comparative analysis of European and Russian technical documentation of building materials, Construction of Unique Buildings and Structures, 4(19), 2014, pp.34-50.

Google Scholar

[23] A. Kaklauskas, J. Naimaviciene, M. Krutinis, D. Venskus, E.K. Zavadskas, V. Plakys, Model for a complex analysis of intelligent built environment, Automation in construction, 3(2010), pp.326-340.

DOI: 10.1016/j.autcon.2009.12.006

Google Scholar

[24] V. Murgul: Features of energy efficient upgrade of historic buildings (illustrated with the example of Saint-Petersburg). Journal of Applied Engineering Science, Vol. 12 (1) (2014), pp.1-10.

DOI: 10.5937/jaes12-5609

Google Scholar

[25] V. Murgul: Solar energy systems in the reconstruction of heritage historical buildings of the northern towns (for example Sankt-Petersburg). Journal of Applied Engineering Science, Vol. 12 (2) (2014), pp.121-128.

DOI: 10.5937/jaes12-6136

Google Scholar

[26] E. Aronova, G. Radovic, V. Murgul, N. Vatin: Solar Power Opportunities in Northern Cities (Case Study of Saint-Petersburg). Applied Mechanics and Materials. Vols. 587-589 (2014), pp.348-354.

DOI: 10.4028/www.scientific.net/amm.587-589.348

Google Scholar

[27] D. Vuksanovic, V. Murgul, N. Vatin, E. Aronova: Shadowing impact on amount of power generated by photovoltaic modules. Applied Mechanics and Materials. Vols. 587-589 (2014), pp.342-347.

DOI: 10.4028/www.scientific.net/amm.587-589.342

Google Scholar

[28] G. Radovic, V. Murgul, N. Vatin: Fast urban development of Cetinje – old royal capital of Montenegro. Applied Mechanics and Materials. Vols. 584-586 (2014), pp.564-569.

DOI: 10.4028/www.scientific.net/amm.584-586.564

Google Scholar

[29] V. Murgul: Improvement of the energy efficient properties of the houses in the historical area of Saint-Petersburg, Architecton: Proceedings of Higher Education, 4 (40) (2012), pp.54-62.

Google Scholar

[30] E. Aronova, V. Murgul: The evaluation of the appropriateness for using solar energy technologies in the historical building of Saint-Petersburg and the climatic conditions of the North-West region, Architecture and Modern Information Technologies, 2 (23) (2013).

Google Scholar

[31] V. Murgul: Solar energy in the reconstruction of urban environment of historic building Saint-Petersburg, Architecture and Modern Information Technologies, 2 (23) (2013), pp.1-24.

Google Scholar

[32] V. Murgul: Capabilities of using the solar energy for energy supply of the dwelling buildings of the historical area of Saint-Petersburg and for city environment quality improvement, Architecture and Modern Information Technologies, 1 (22) (2013).

Google Scholar

[33] S. Golovina, V. Murgul: Solar energy systems in the architecture of historic cities. Bulletin of Civil Engineers. 5 (40) (2013), pp.26-31.

Google Scholar

[34] D. Nemova, V. Murgul, A. Golik, E. Chizhov, V. Pukhkal, N. Vatin: Reconstruction of administrative buildings of the 70s: the possibility of energy modernization. Journal of Applied Engineering Science, Vol. 12 (1), (2014), pp.37-44.

DOI: 10.5937/jaes12-5610

Google Scholar