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2024 | OriginalPaper | Buchkapitel

Structural Performance of a Perforated Hybrid Stainless Steel I-beam

verfasst von : P. Athira, Aju Mathew George

Erschienen in: Recent Advances in Structural Engineering

Verlag: Springer Nature Singapore

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Abstract

Stainless steel grades are emerging in industries due to their properties like resistance to corrosion, durability, weldability, minimal maintenance requirements, good aesthetic appearance, and ductility. Also, stainless steel can be recycled and is good fire resistant. Hybrid sections with a higher-grade flange and lower-grade web are used in construction to improve the stability of an I-beam. it is important to investigate the structural behavior of a hybrid stainless steel section containing perforations in its web because perforations are essential for the passage of building services like ducts for water, air conditioning, electricity, etc. A numerical investigation on the flexural behavior of perforated Hybrid Stainless Steel (HSS) I-beams using the commercial finite element software, ABAQUS is presented in this paper based on cross-section slenderness i.e., flange and web-critical sections. 3-point bending (3 PB) specimens were chosen for the current numerical investigations. The stainless steel varieties lean duplex stainless steel and duplex stainless steel are taken as the materials for the hybrid steel section.

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Literatur
1.
Zurück zum Zitat Saliba N, Gardner L (2013) Cross-section stability of lean duplex stainless steel welded I-sections. J Constr Steel Res 80:1–14CrossRef Saliba N, Gardner L (2013) Cross-section stability of lean duplex stainless steel welded I-sections. J Constr Steel Res 80:1–14CrossRef
2.
Zurück zum Zitat EN 1993–1–4:2006 + A1 (2015) Eurocode 3: Design of steel structures–Part 1.4: General rules–Supplementary rules for stainless steels EN 1993–1–4:2006 + A1 (2015) Eurocode 3: Design of steel structures–Part 1.4: General rules–Supplementary rules for stainless steels
3.
Zurück zum Zitat Arrayago I, Real E, Gardner L (2015) Description of stress–strain curves for stainless steel alloys. Mater Des 87:540–552CrossRef Arrayago I, Real E, Gardner L (2015) Description of stress–strain curves for stainless steel alloys. Mater Des 87:540–552CrossRef
4.
Zurück zum Zitat Lalthazuala R, Singh KD (2019) Investigations on the structural performance of hybrid stainless steel I-beams based on slenderness. Thin-Walled Struct 137:197–212CrossRef Lalthazuala R, Singh KD (2019) Investigations on the structural performance of hybrid stainless steel I-beams based on slenderness. Thin-Walled Struct 137:197–212CrossRef
5.
Zurück zum Zitat Sun Y, Liang Y, Zhao O (2020) Local–flexural interactive buckling behavior and resistances of high-chromium stainless steel slender welded I-section columns. Eng Struct 220:111022CrossRef Sun Y, Liang Y, Zhao O (2020) Local–flexural interactive buckling behavior and resistances of high-chromium stainless steel slender welded I-section columns. Eng Struct 220:111022CrossRef
Metadaten
Titel
Structural Performance of a Perforated Hybrid Stainless Steel I-beam
verfasst von
P. Athira
Aju Mathew George
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-9502-8_24