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2024 | OriginalPaper | Buchkapitel

The Influence of the Non-dimensional Slenderness Ratio on the Flexural Strength of Beams

verfasst von : Gorle Hari Krishna, SK Khaja Sameer, Mohammad Rahmatulla

Erschienen in: Recent Advances in Structural Engineering

Verlag: Springer Nature Singapore

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Abstract

This paper mainly deals with the effect of the non-dimensional slenderness ratio (λlt) on a member's ability to flexural behavior, which was studied numerically using a wide range of built-up I-sections. Axial, bending, shear, and torsional stresses are frequently present during a complicated loading condition that is applied to thin-walled frame parts with extremely narrow open cross-sections and poor torsional stiffness. As a result, they frequently experience instability even before reaching their production capacity. One of the most common types of lateral torsional buckling (LTB) is a prevalent instability phenomenon related to thin-walled constructions. The results are drawn to the conclusion that the design methodology was decided Instead of section classification, the non-dimensional slenderness ratio (λlt) determines the type of failure. The design procedure for the flexural design strength of the member, when the λlt ≤ 0.4 the yield stress governs the flexural design strength, it denotes that the component can form plastic hinges and has the necessary rotational strength for the structure to fail due to the development of plastic mechanism. When the λlt > 0.4 then the flexural torsional buckling strength governs the design bending strength, which means the member can’t develop plastic hinges and the member failed before the process of the plastic mechanism’s creation. As a part of the research, we are focusing on how the non-dimensional slenderness ratio affects the flexural capacity of a member. It was observed that even though the section was under the plastic section and compact section, the member failed before reaching its yield stress.

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Literatur
1.
Zurück zum Zitat Bleich F (1952) Buckling strength of metal structures. McGraw-Hill Book Company, Inc., Cardnr, pp 51–12588 Bleich F (1952) Buckling strength of metal structures. McGraw-Hill Book Company, Inc., Cardnr, pp 51–12588
2.
Zurück zum Zitat Prandtl L (1899) Kipperscheinungen (Ph.D. thesis), Nürnberg Prandtl L (1899) Kipperscheinungen (Ph.D. thesis), Nürnberg
3.
Zurück zum Zitat Michell AG (1899) Elastic stability of long beams under transverse forces Michell AG (1899) Elastic stability of long beams under transverse forces
4.
Zurück zum Zitat Timoshenko S, Dumas A (1913) Sur la stabilité des systèmes élastiques Timoshenko S, Dumas A (1913) Sur la stabilité des systèmes élastiques
5.
Zurück zum Zitat Vlasov VZ (2014) Tonkostennye uprugie sterzhni (in Russian) Vlasov VZ (2014) Tonkostennye uprugie sterzhni (in Russian)
6.
Zurück zum Zitat Winter G (1943) Lateral stability of unsymmetrical I-beams and trusses in bending Winter G (1943) Lateral stability of unsymmetrical I-beams and trusses in bending
7.
Zurück zum Zitat Clark JW, Hill HN (1977) Lateral buckling of beams, J. Struct. Div. ASCE 68 Clark JW, Hill HN (1977) Lateral buckling of beams, J. Struct. Div. ASCE 68
8.
Zurück zum Zitat Galambos TV (1963) Inelastic lateral buckling of beams Galambos TV (1963) Inelastic lateral buckling of beams
9.
Zurück zum Zitat Yoo CH, Lee S (2011) Stability of structures: principles and applications Yoo CH, Lee S (2011) Stability of structures: principles and applications
10.
Zurück zum Zitat Baláž I, Koleková Y (1999) Stability of monosymmetric beams. In: Proceedings of the 6th international colloquium “Stability and ductility of steel structures, pp 57–64 Baláž I, Koleková Y (1999) Stability of monosymmetric beams. In: Proceedings of the 6th international colloquium “Stability and ductility of steel structures, pp 57–64
11.
Zurück zum Zitat Koleková Y, Baláž I (2012) LTB resistance of beams influenced by plastic reserve or local buckling Koleková Y, Baláž I (2012) LTB resistance of beams influenced by plastic reserve or local buckling
12.
Zurück zum Zitat Serna MA, López A, Puente I, Yong DJ (2006) Equivalent uniform moment factors for lateral–torsional buckling of steel members Serna MA, López A, Puente I,  Yong DJ (2006) Equivalent uniform moment factors for lateral–torsional buckling of steel members
13.
Zurück zum Zitat Lincoln Babu M (2007) Importance of non-dimensional slenderness ratio in the design of compression and shear members as per IS 800:2007 Lincoln Babu M (2007) Importance of non-dimensional slenderness ratio in the design of compression and shear members as per IS 800:2007
14.
Zurück zum Zitat Pandit P, Venkata PD, Rahmatulla M (2022) Lateral torsional buckling effect on I-section with flange bracing Pandit P, Venkata PD, Rahmatulla M (2022) Lateral torsional buckling effect on I-section with flange bracing
15.
Zurück zum Zitat Swelem SMA (2022) Effect of different parameters on lateral-torsional buckling behavior of I-girders with circular corrugated webs Swelem SMA (2022) Effect of different parameters on lateral-torsional buckling behavior of I-girders with circular corrugated webs
16.
Zurück zum Zitat Bureau of Indian Standards (2007) General Construction in Steel—Code of Practice, IS 800: 2007, BIS, New Delhi, India Bureau of Indian Standards (2007) General Construction in Steel—Code of Practice, IS 800: 2007, BIS, New Delhi, India
17.
Zurück zum Zitat CEN. EN 1993-1-1 (2005) Eurocode 3: Design of Steel Structures—Part 1–1: General Rules and Rules for Buildings CEN. EN 1993-1-1 (2005) Eurocode 3: Design of Steel Structures—Part 1–1: General Rules and Rules for Buildings
18.
Zurück zum Zitat Subramanian N (2008) Design of steel structures. Oxford higher education, Chennai Subramanian N (2008) Design of steel structures. Oxford higher education, Chennai
19.
Zurück zum Zitat Pezeshky P, Sahraei A, Mohareb (2019) Effect of bracing height on lateral torsional buckling resistance of steel beams Pezeshky P, Sahraei A, Mohareb (2019) Effect of bracing height on lateral torsional buckling resistance of steel beams
20.
Zurück zum Zitat Yilmaz T, Kirac N, Kilic T (2017) Lateral-torsional buckling of european wide flange I-section beams Yilmaz T, Kirac N, Kilic T (2017) Lateral-torsional buckling of european wide flange I-section beams
21.
Zurück zum Zitat De’nan F, Hashim NS (2023) Parametrical study of lateral torsional buckling behaviour for triangular web profile steel section De’nan F, Hashim NS (2023) Parametrical study of lateral torsional buckling behaviour for triangular web profile steel section
Metadaten
Titel
The Influence of the Non-dimensional Slenderness Ratio on the Flexural Strength of Beams
verfasst von
Gorle Hari Krishna
SK Khaja Sameer
Mohammad Rahmatulla
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-9502-8_25