Limit Analysis of Thin-Wall Metal Frames Taking into Account their Foundations Rigidity

Author:

Alawdin Piotr1,Petrusevich Viktoryia2

Affiliation:

1. University of Zielona Gora, Faculty of Civil Engineering, Architecture and Environmental Engineering, Szafrana st 1, 65-516 Zielona Góra , Poland

2. University of Zielona Gora, Zielona Góra , Poland

Abstract

Abstract In this paper, the mathematical model of shakedown optimization problem of limit analysis for the thin-wall metal frames under variable quasi-static loads is presented. Authors assume the elastic-plastic flexural buckling in one plane without lateral torsional buckling behavior of members on conditions of the ideal elastic-plastic behaviour of the frames materials. According to Eurocodes requirements, the features of these frames taking into account rigidity of their foundations are described. There is problem with definition equivalent uniform moment factors for frames under variable quasi-static loads, because moment diagram is not constant. Classification of joints by stiffness was analyzed. The cases when the conditions of rigidity are not satisfied were described. The variants of solving tasks for thin-wall metal frames have been developed, for which there is a discrepancy between the classification by stiffness of the column base and the initial design model. It’s demonstrated on the principle scheme of the iteration process. With the help of numerical example, the problems which deal with classification of joints by stiffness on the final step of the optimal design of the thin-wall metal frames were performed.

Publisher

Walter de Gruyter GmbH

Subject

General Medicine

Reference7 articles.

1. 1. Eurocode 3 EN 1993-1-3: Design of steel structures. Part 1-3: General rule. Brussels, European Committe for standardizations, 2006.

2. 2. Eurocode 3 EN 1993-1-1: Design of steel structures. Part 1-1: general rules and rules for buildings, Brussels, European Committe for standardizations, 2006.

3. 3. Eurocode 3 EN 1993-1-8: Design of steel structures. Part 1-8: Design of joints. Brussels, European Committe for standardizations, 2010.

4. 4. Alawdin P.: Limit Analysis of structures under variable loads, Minsk, Tekhnoprint 2005.

5. 5. Alawdin P, Liepa L.: Optimal shakedown of the thin-wall metal structures under strength and stiffness constrains, in: Civil and environmental engineering reports - CEER 2017; 25 (2): 25-41.

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