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Behavior and Design of Aluminum Structures

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

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Aluminum Structures

Aluminum Structures
Author: J. Randolph Kissell
Publisher: John Wiley & Sons
Total Pages: 546
Release: 2002-10-02
Genre: Technology & Engineering
ISBN: 0471275549

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On the First Edition: "The book is a success in providing a comprehensive introduction to the use of aluminum structures . . . contains lots of useful information." —Materials & Manufacturing Processes "A must for the aluminum engineer. The authors are to be commended for their painstaking work." —Light Metal Age Technical guidance and inspiration for designing aluminum structures Aluminum Structures, Second Edition demonstrates how strong, lightweight, corrosion-resistant aluminum opens up a whole new world of design possibilities for engineering and architecture professionals. Keyed to the revised Specification for Aluminum Structures of the 2000 edition of the Aluminum Design Manual, it provides quick look-up tables for design calculations; examples of recently built aluminum structures-from buildings to bridges; and a comparison of aluminum to other structural materials, particularly steel. Topics covered include: Structural properties of aluminum alloys Aluminum structural design for beams, columns, and tension members Extruding and other fabrication techniques Welding and mechanical connections Aluminum structural systems, including space frames, composite members, and plate structures Inspection and testing Load and resistance factor design Recent developments in aluminum structures


Aluminium Structures

Aluminium Structures
Author: R. Narayanan
Publisher: Spon Press
Total Pages: 220
Release: 1987
Genre: Technology & Engineering
ISBN:

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Aluminium Structural Design

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

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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.


Fatigue Design of Aluminum Components and Structures

Fatigue Design of Aluminum Components and Structures
Author: Maurice L. Sharp
Publisher: McGraw-Hill Professional Publishing
Total Pages: 374
Release: 1996
Genre: Science
ISBN:

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Focusing on the design challenges associated with using aluminum in such fatigue-critical applications as highway infrastructures, transportation vehicles, automotive suspension systems, and aircraft and machine parts, this reference gives the data and guidelines that mechanical and civil design engineers need to meet these challenges head on.


Structural Behavior and Design of Two Custom Aluminum Extruded Shapes in Custom Unitized Curtain Wall Systems

Structural Behavior and Design of Two Custom Aluminum Extruded Shapes in Custom Unitized Curtain Wall Systems
Author:
Publisher:
Total Pages: 96
Release: 2006
Genre:
ISBN:

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The focus of the research in this thesis is on the structural behavior and design of two aluminum "E-type" structural sections that are used in unitized curtain wall systems today. Moment capacities of the two "E-type" sections as one are analyzed by three methods - hand calculations using Minimum Moment Capacity Approach and Total Moment Capacity Approach, the finite element method using ABAQUS program, and via an experimental investigation. A comparison of moment capacities determined using the three methods is presented. Upon the evaluation and comparison of the results obtained by the three methods in this study, the Total Moment Capacity Approach is determined to be an accurate method to predict moment capacities of the two "E-type" structural sections functioning as one structural member and is recommended for the evaluation of moment capacities of complex thin-walled sections and assembled sections to supplement the Specification for Aluminum Structures (2000).


Behaviour and Design of Aluminum Alloy Structural Members

Behaviour and Design of Aluminum Alloy Structural Members
Author: Jihua Zhu
Publisher: Open Dissertation Press
Total Pages:
Release: 2017-01-27
Genre:
ISBN: 9781361429037

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This dissertation, "Behaviour and Design of Aluminum Alloy Structural Members" by Jihua, Zhu, 朱繼華, 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: Abstract of thesis entitled BEHAVIOUR AND DESIGN OF ALUMINIUM ALLOY STRUCTURAL MEMBERS Submitted by ZHU JIHUA for the Degree of Doctor of Philosophy at The University of Hong Kong in September 2006 The behaviour and design of aluminum alloy structural members are investigated in this study. The research focused on aluminum columns, beams, and beam-columns of square, rectangular and circular hollow sections. Both experimental and numerical investigations were performed and reported. The effects of transverse welds on column strengths were also investigated. Design rules for aluminum columns with and without transverse welds were proposed. The experimental study included column, beam and beam-column tests. The test specimens were fabricated by extrusion using normal strength aluminum alloy 6063- T5 and high strength aluminum alloy 6061-T6. Both the non-welded and welded material properties were obtained from different coupon tests. The local and overall geometric imperfections were measured. The test program for fixed-ended columns was conducted on 70 column specimens that included 50 columns with both ends welded to aluminum end plates and 20 columns without welding of end plates. The column length ranged from 300 to 3000 mm in order to obtain a column curve for each test series. The test program for beams and beam-columns included 6 pure bending tests and 44 beam-column tests of five different cross-sections. Pure bending tests were conducted for each test series to determine the bending capacities of the specimens. The beam-column specimens were compressed between pinned ends at different eccentricities in order to obtain an interaction curve for each series of test. The test strengths were compared with the design strengths calculated using the American, Australian/New Zealand and European specifications for aluminum structures. A numerical investigation of fixed-ended aluminum alloy tubular columns of square, rectangular and circular hollow sections is also presented. An accurate finite element model was developed. The initial local and overall geometric imperfections were incorporated in the model. The non-welded and welded material nonlinearities were considered in the analysis. The welded columns were modeled by dividing the columns into different portions along the column length, so that the heat-affected zone softening at both ends of the welded columns was included in the simulation. The nonlinear finite element model was verified against the experimental results. It is shown that the calibrated model provided accurate predictions of the experimental loads and failure modes of the tested columns. Hence, the model was used for an extensive parametric study of cross-section geometry. The parametric study included 248 column specimens that covered a wide range of column length and cross-section dimensions. The heat-affected zone softening factors have been proposed for square and circular hollow sections based on the results obtained from the parametric study. Design approaches for aluminum alloy tubular columns with and without transverse welds were proposed. Column strengths predicted by the finite element analysis were compared with the design strengths calculated using the current American, Australian/New Zealand and European specifications for aluminum structures. In addition, the direct strength method, which was originally developed fo


Strength Design in Aluminum

Strength Design in Aluminum
Author: Mousa Tabatabai Gargari
Publisher: ASCE Publications
Total Pages: 96
Release: 2005-01-01
Genre: Technology & Engineering
ISBN: 9780784475614

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Prepared by the Task Committee on Strength Design in Aluminum of the Committee on Special Structures of the Committee on Metals of the Structural Engineering Institute of ASCE. This report compares the Canadian, European, and U.S. codes on aluminum in order to provide a basis for the preparation of a common specification document. The three codes are: CSA S157-03, Strength Design in Aluminum (2003, CSA); Eurocode 9, Design of Aluminum Alloy Structures (EC9); Specification of Aluminum Structures: Load and Resistance Factor Design, 2nd ed.(2000, Aluminum Association) Frequently using a tabular format, this report compares how the three codes treat symbols, design principles, material principles, resistance limited by yield or rupture, buckling, and connections. By stripping the load and resistance factors from the design expressions, this book is able to compare the essential rules of engineering on which the codes are based and to compare the positions taken by three different code writing committees. The results contributes to a common specification document by signaling the areas of agreement and, more importantly, the areas of disagreement. This book is a valuable resource for structural engineers working with aluminum, especially in Canada, Europe, or the United States.


Design of Aluminum Structures

Design of Aluminum Structures
Author: Denis Beaulieu
Publisher:
Total Pages: 780
Release: 2006
Genre: Aluminum, Structural
ISBN: 9782923168081

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Introduction to Structural Aluminium Design

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

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"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.