December 2, 2020

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Casting Aluminum Alloys

Casting Aluminum Alloys
Author : Michael V Glazoff,Vadim S Zolotorevsky,Nikolai A Belov
Publisher : Elsevier
Release Date : 2010-07-07
Category : Technology & Engineering
Total pages :544
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Casting Aluminum Alloys summarizes research conducted at Moscow Institute of Steel and Alloy during many decades in part together with Alcoa Inc. The research covered areas of the structure, properties, thermal resistance, corrosion and fatigue of aluminum alloys in industrial manufacturing. Emphasis on interconnection among phase equilibria, thermodynamics and microstructure of alloys Systematic overview of all phase diagrams with Al that are important for the development of casting aluminium alloys Diagrams ("processing windows") of important technological properties such as castability, molten metal fluidity, tendency to hot pre-solidification cracking, porosity Mathematical models for alloy mechanical properties facilitating the down-selection of best prospect candidates for new alloy development New principles of design of eutectic casting aluminium alloys Examples of successful novel casting alloy development, including alloys for high-strength applications, alloys with transition metals, and novel alloys utilizing aluminium scrap

Casting Aluminum Alloys

Casting Aluminum Alloys
Author : Michael V Glazoff,Alexandra Khvan,Vadim S Zolotorevsky,Nikolai A Belov,Alan Dinsdale
Publisher : Butterworth-Heinemann
Release Date : 2018-09-03
Category : Technology & Engineering
Total pages :562
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Casting Aluminum Alloys, Second Edition, the follow up to the fall 2007 work on the structure, properties, thermal resistance, corrosion and fatigue of aluminum alloys in industrial manufacturing, discusses findings from the past decade, including sections on new casting alloys, novel casting technologies, and new methods of alloys design. The book also includes other hot topics, such as the implementation of computational technologies for the calculation of phase equilibria and thermodynamic properties of alloys, the development of software for calculation of diffusion processes in aluminum alloys, computational modeling of solidification microstructure and texture evolution of multi-component aluminum materials. In addition to changes in computational predictive abilities, there is a review of novel casting aluminum alloy compositions and properties, as well as descriptions of new casting technologies and updates to coverage on the mechanical properties of aluminum casting alloys. Presents a discussion of thermodynamic calculations used for assessing non-equilibrium solidifications of casting aluminum alloys Expands coverage of mathematical models for alloy mechanical properties, helping facilitate the selection of the best prospective candidate for new alloy development Contains a new section that describes the self-consistent evaluation of phase equilibria and thermodynamic properties of aluminum alloys

Introduction to Aluminum Alloys and Tempers

Introduction to Aluminum Alloys and Tempers
Author : J. Gilbert Kaufman
Publisher : ASM International
Release Date : 2000
Category : Aluminum alloys
Total pages :258
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Annotation Examines characteristics of wrought and cast aluminum alloys, then presents basic aluminum alloy and temper designation systems, as developed by the Aluminum Association, and explains them with examples. Wrought and cast aluminum designations are treated in a similar fashion. Processes used to produce aluminum alloy products are described briefly, and representative applications for aluminum alloys and tempers are detailed, in areas such as electrical markets, building and construction, marine and rail transportation, packaging, and petroleum and chemical industry components. A final chapter presents 65 pages of bandw micrographs illustrating the microstructure of a range of aluminum alloys and tempers, to assist in understanding consequences of applying the production technology implied by the temper designations. Annotation copyrighted by Book News, Inc., Portland, OR

Aluminum Alloy Castings

Aluminum Alloy Castings
Author : John Gilbert Kaufman,Elwin L. Rooy
Publisher : ASM International
Release Date : 2004
Category : Technology & Engineering
Total pages :340
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J. G. (Gil) Kaufman is currently president of his consulting company, Kaufman Associates.

Physical Metallurgy of Direct Chill Casting of Aluminum Alloys

Physical Metallurgy of Direct Chill Casting of Aluminum Alloys
Author : Dmitry G. Eskin
Publisher : CRC Press
Release Date : 2008-04-17
Category : Technology & Engineering
Total pages :328
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Pulling together information previously scattered throughout numerous research articles into one detailed resource, Physical Metallurgy of Direct Chill Casting of Aluminum Alloys connects the fundamentals of structure formation during solidification with the practically observed structure and defect patterns in billets and ingots. The author examines the formation of a structure, properties, and defects in the as-cast material in tight correlation to the physical phenomena involved in the solidification and the process parameters. The book draws on the author’s advanced research to provide a unique application of physical metallurgy to direct chill (DC) casting technology. He examines structure and defect formation— including macrosegregation and hot tearing. Each technology-centered chapter provides historical background before reviewing current developments. The author supports his conclusions with computer simulation results that have been correlated with highly progressive experimental data. He presents a logical system of structure and defect formation based on the specific features of the DC casting process. He also demonstrates that the seemingly controversial results reported in literature are, in fact, caused by the different ratio of the same mechanisms. Compiling recent results and data, the book discusses the fundamentals of solidification together with metallurgical and technological aspects of DC casting. It gives new insight and perspective into DC casting research.

Simulation of Aluminum Shape Casting Processing

Simulation of Aluminum Shape Casting Processing
Author : Minerals, Metals and Materials Society. Annual Meeting
Publisher : Wiley-TMS
Release Date : 2006-11
Category : Science
Total pages :388
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This book reviews the latest developments and applications of modeling and simulation techniques in aluminum shape castings, and the need for improvement of these computational techniques. Specifically, topics include design of both the cast aluminum alloy as well as aluminum casting and gating system; modeling, simulation and optimization of both the casting process and heat treatment; modeling and simulation of both casting defect and microstructure; prediction of mechanical performance and influence of subsequent processing on final performance. Developers and users of computational techniques applied to aluminum shape castings as well as end users of castings will find this book extremely helpful.

Aluminum Casting Alloys and Alloys for Other Purposes

Aluminum Casting Alloys and Alloys for Other Purposes
Author : Aluminum Company of America
Publisher : Unknown
Release Date : 1940
Category : Aluminum alloys
Total pages :89
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GB/T 1173-2013: Translated English of Chinese Standard (GBT 1173-2013, GB/T1173-2013, GBT1173-2013)

GB/T 1173-2013: Translated English of Chinese Standard (GBT 1173-2013, GB/T1173-2013, GBT1173-2013)
Author : www.ChineseStandard.net
Publisher : https://www.chinesestandard.net
Release Date : 2017-04-29
Category : Technology & Engineering
Total pages :22
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This Standard specifies the designation and code, technical requirements, test methods and inspection rules of casting aluminum alloy. This Standard is applicable to casting aluminum alloy used for aluminum alloy casting.

Properties of Aluminum Alloys

Properties of Aluminum Alloys
Author : John Gilbert Kaufman
Publisher : ASM International
Release Date : 2008-01-01
Category : Technology & Engineering
Total pages :559
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A compilation of data collected and maintained for many years as the property of a large aluminum company, which decided in 1997 to make it available to other engineers and materials specialists. In tabular form, presents data on the tensile and creep properties of eight species of wrought alloys and five species of cast alloys in the various shapes used in applications. Then looks at the fatigue data for several alloys under a range of conditions and loads. The data represent the typical or average findings, and though some were developed years ago, the collection is the largest and most detailed available. There is no index.

Aluminum Casting Technology

Aluminum Casting Technology
Author : Donna L. Zalensas
Publisher : Amer Foundry Society
Release Date : 1993
Category : Aluminum castings
Total pages :356
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Separation of cast and wrought aluminum alloys by thermomechanical processing

Separation of cast and wrought aluminum alloys by thermomechanical processing
Author : Robert Duane Brown,Fred Ambrose,Dominic Montagna,United States. Bureau of Mines
Publisher : Unknown
Release Date : 1985
Category : Technology & Engineering
Total pages :12
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Microsegregation of Copper in Aluminium Casting Alloys

Microsegregation of Copper in Aluminium Casting Alloys
Author : Jae-Ik Cho
Publisher : Unknown
Release Date : 2003
Category :
Total pages :192
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WELDING 214, 356, AND ALMAG 35 CAST ALUMINUM ALLOYS TO 5456 WROUGHT ALUMINUM ALLOY.

WELDING 214, 356, AND ALMAG 35 CAST ALUMINUM ALLOYS TO 5456 WROUGHT ALUMINUM ALLOY.
Author : Anonim
Publisher : Unknown
Release Date : 1964
Category :
Total pages :29
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Cast 214, 356-T6, and Almag 35 aluminum plate (3/8 in. thick) were welded to wrought 5456 aluminum alloy plate (3/8 in. thick), using the gas tungsten-arc process. Commercial filler metals 4043, 5183, and 5556 were used. Two beads were deposited on both sides of a double vee joint. It was determined by radiography that the weldments were of excellent quality. No defects were noted, except for slight tungsten inclusions in one weld. All tensile test speciments, with the reinforcements removed, failed in the cast member. The weldments containing Almag 35 casting yeilded the highest tensile properties. Although the joint efficiencies of the 356-T6/5456 weldments were low, the as-welded properties of this combination were approximately equal to the properties of the 214/5456 weldments. The choice of filler metals had little influence on the weldment properties.

The 15th International Conference on Aluminium Alloys

The 15th International Conference on Aluminium Alloys
Author : Qing Liu,Jian-Feng Nie,Robert E. Sanders,Zhi Hong Jia,Ling Fei Cao
Publisher : Trans Tech Publications Ltd
Release Date : 2016-11-01
Category : Technology & Engineering
Total pages :718
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This collection of peer-reviewed papers by results of 15th International Conference on Aluminium Alloys (ICAA15, 12-16 June, 2016 in Chongqing, China) that are cover most aspects of aluminium alloys, including casting and solidification; phase transformations; thermo-mechanical processing; metal plasticity and forming; strength, fracture and fatigue; advanced atomic-scale characterization; corrosion and surface properties; novel processes and alloy design; modelling and numerical simulation.

Aluminium Alloys - Their Physical and Mechanical Properties

Aluminium Alloys - Their Physical and Mechanical Properties
Author : E.A. Starke,T.H. Sanders Jr.,W.A. Cassada
Publisher : Trans Tech Publications Ltd
Release Date : 2000-05-09
Category : Technology & Engineering
Total pages :1910
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Volume is indexed by Thomson Reuters CPCI-S (WoS). This 3-volume set presents the proceedings of the seventh International Conferences on Aluminum Alloys: Their Physical and Mechanical Properties. The papers are concerned with the current views of the world’s aluminum experts on the basic understanding and application of aluminum alloys. The proceedings cover a wide range of related topics and present the views from both academia and industry. Topics include casting and solidification processing; ingot and billet processing; recovery, recrystallization and texture development; phase transformations; joining; mechanical properties; physical properties; and alloy and product development. Papers also address experimentation and modeling of the physical and mechanical properties of aluminum alloys. A broad range of material applications, including transportation, packaging and building and construction are considered.