INNOVATIVE NUMERICAL APPROACHES FOR STRAIN LIMITED DESIGN OF COMPOSITE BEAMS

Author:

Zhang Q.1,Schäfer M.1

Affiliation:

1. University of Luxembourg, Department of Engineering

Abstract

AbstractFor composite cross‐section in steel and concrete plastic bending resistance is often used. However, also for cross‐section of class 1 and 2 rotation capacity may be reduced, then strain‐limited or elastic resistance becomes important. The strain‐limited resistance refers to the design of concrete sections according to EN 1992‐1‐1, considering the material nonlinearity. For the numerical approaches, the conventional “finite fibre method” demands high programming and calculation efforts due to the vast amount of fibres to be computed. In this article, three alternative numerical approaches: the finite cell method, the integral strain method and the direct analytical method are introduced. These approaches reduce the number of elements compared to the fibre method. They take different levels of simplification, varies in application ranges, accuracy and calculation speed. For conventional composite beam and slim‐floor beam cross‐sections, an efficient alternative to the fibre method is presented by the alternates.

Publisher

Wiley

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference8 articles.

1. Zhang Q.:Moment and longitudinal resistance for composite beams based on strain limited design PhD-thesis University of Luxembourg October2020

2. Hanswille G. Schäfer M. Bergmann M.:EUROCODE 4 DIN EN 1994-1-1 – Bemessung und Konstruktion von Verbundtragwerken aus Stahl und Beton Kommentar und Beispiele ISBN 978-3-410-26916-8 Beuth + Ernst & Sohn Berlin 2020

3. S.Heinemeyer.Zum Trag- und Verformungsverhalten von Verbundträgern ausultrahochfestem Beton mit Verbundleisten. Dissertation Eigenverl. Aachen 2011.

4. EN1992-1-1:Eurocode 2: Design of concrete structures - Part 1-1: General rules and rules for buildings 2004

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