Behaviour and Design of Aluminium Alloy Structural Elements

Behaviour and Design of Aluminium Alloy Structural Elements
Title Behaviour and Design of Aluminium Alloy Structural Elements PDF eBook
Author Meini Su
Publisher Open Dissertation Press
Pages
Release 2017-01-27
Genre
ISBN 9781361356395

Download Behaviour and Design of Aluminium Alloy Structural Elements Book in PDF, Epub and Kindle

This dissertation, "Behaviour and Design of Aluminium Alloy Structural Elements" by Meini, Su, 蘇玫妮, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: Aluminium alloys are nonlinear metallic materials with continuous stress-strain curves that are not well represented by the simplified elastic, perfectly plastic material model used in most existing design specifications. The aims of this study are to develop a more efficient design method for aluminium alloy structures by rationally exploiting strain hardening. The key components of this study include laboratory testing, numerical modelling and development of design guidance for aluminium alloy structures. As part of the present study, the experimental programme included tests on 11 stub columns, 40 simply supported beams, 46 continuous beams and corresponding tensile coupon tests. Numerical investigations of aluminium alloy simply supported beams and continuous beams were also conducted. The validated finite element models were used for extensive parametric studies, generating 96 results for beams under three-point bending, 96 under four-point bending and 210 for continuous beams. The experiments and numerical simulations have shown the following key features of the inelastic behaviour of aluminium alloy structural elements: (1) the significance of strain hardening, indicated by the ultimate stress over the yield stress, could be up to 50%; (2) non-slender section capacities could be generally up to 40% higher than the yield limits in compression, and 50% greater than the plastic moments in bending; (3) the experimental and numerical ultimate loads of continuous beams on non-slender sections go beyond the calculated loads corresponding to the occurrence of the first hinge by more than 10%. Previous experimental data on aluminium alloy stub columns and simply supported beams were also collected. These collected test data were used together with the newly generated experimental and numerical results obtained from this study, totalling about 900 data, to assess the design predictions of the American, Australian/New Zealand and European specifications. On average, the existing design methods under-estimated the capacity of aluminium alloy stub columns by around 15% 22%, simply supported beams by around 18% 40% and continuous beams by around 27% 50%. Existing section classification limits in Eurocode 9 (2007) were also assessed, and while they were found to be safe, some improved limits were proposed. The combined experimental and numerical results were used to develop and calibrate a new design method, termed the continuous strength method (CSM). Two key components of the CSM - a base curve and a bi-linear material model for aluminium alloys have been proposed in this study. Global plastic analysis allowing for moment redistribution has also been adopted in the CSM. Unlike current practices, the CSM has the merits of adopting the continuous treatment for the cross-section deformation response, rationally exploiting the available capacity beyond the yield limit and reasonably allowing for redistributing the internal forces. The capacity predictions of aluminium alloy structural members have been improved by more than 30% using the CSM. Reliability analyses have also been performed to assess the reliability level of different design methods according to the American Institute of Steel Construction (2010) and European Standard EN1990 (2002) approaches. The CSM has been shown to be safe, efficient and consistent for aluminium alloy structural members. DOI: 10.5353/th_b5328036 Subjects:

Behaviour and Design of Aluminium Alloy Structural Elements

Behaviour and Design of Aluminium Alloy Structural Elements
Title Behaviour and Design of Aluminium Alloy Structural Elements PDF eBook
Author 蘇玫妮
Publisher
Pages 0
Release 2014
Genre Aluminum alloys
ISBN

Download Behaviour and Design of Aluminium Alloy Structural Elements Book in PDF, Epub and Kindle

Behaviour and Design of Aluminium Alloy Structural Elements

Behaviour and Design of Aluminium Alloy Structural Elements
Title Behaviour and Design of Aluminium Alloy Structural Elements PDF eBook
Author 蘇玫妮
Publisher
Pages 336
Release 2014
Genre Aluminum alloys
ISBN

Download Behaviour and Design of Aluminium Alloy Structural Elements Book in PDF, Epub and Kindle

Behavior and Design of Aluminum Structures

Behavior and Design of Aluminum Structures
Title Behavior and Design of Aluminum Structures PDF eBook
Author Maurice L. Sharp
Publisher McGraw-Hill Companies
Pages 348
Release 1993
Genre Technology & Engineering
ISBN

Download Behavior and Design of Aluminum Structures Book in PDF, Epub and Kindle

Aluminium Structural Design

Aluminium Structural Design
Title Aluminium Structural Design PDF eBook
Author Frederico M. Mazzolani
Publisher Springer
Pages 398
Release 2014-05-04
Genre Technology & Engineering
ISBN 3709127947

Download Aluminium Structural Design Book in PDF, Epub and Kindle

The subject of the book is the design of aluminium alloys structures. The subject is treated from different points of view, like technology, theory, codification and applications. Aluminium alloys are successfully employed in the transportation industry; A parallel trend has been observed in the last decades in civil engineering structures, where aluminium alloys compete with steel (long-span roofing, bridges, hydraulic structures, offshore superstructures). This volume collects the lectures of out-standing international experts, who are all involved in the codification activity of Eurocode 9 on Aluminium Structural Design. It illustrates, with particular reference to the fields of transportation and civil engineering, the basic design principles from the material properties and the technological aspects of their application, to the evaluation of the resistance of the structural elements (member and plates) under static, dynamic and fatigue loading conditions.

Introduction to Structural Aluminium Design

Introduction to Structural Aluminium Design
Title Introduction to Structural Aluminium Design PDF eBook
Author Ulrich Müller
Publisher Whittles
Pages 192
Release 2011
Genre Technology & Engineering
ISBN 9781849950077

Download Introduction to Structural Aluminium Design Book in PDF, Epub and Kindle

"This book discusses the use of aluminium in structural and non-structural applications and provides an introduction to designing structures made from aluminium or aluminium alloy elements. It provides a complete ready reference to the material properties and behavior of aluminium, and its use in structural design.

Aluminium Structures

Aluminium Structures
Title Aluminium Structures PDF eBook
Author R. Narayanan
Publisher Spon Press
Pages 220
Release 1987
Genre Technology & Engineering
ISBN

Download Aluminium Structures Book in PDF, Epub and Kindle