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Progress in Materials Science and Engineering: Innovation and Discovery in Russian Science and Engineering

Editat de Carlos Brebbia, Jerome J. Connor
en Limba Engleză Hardback – 23 mai 2018
This book presents recent advances made in materials science and engineering within Russian academia, particularly groups working in the Ural Federal University District. Topics explored in this volume include structure formation analysis of complicated alloys, non-ferrous metals metallurgy, composite composed materials science, and high-pressure treatment of metals and alloys. The finding discussed in this volume are to critical to multiple industries including manufacturing, structural materials, oil and gas, coatings, and metal fabrication.
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Specificații

ISBN-13: 9783319753393
ISBN-10: 3319753398
Pagini: 180
Ilustrații: IX, 212 p. 110 illus., 45 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.59 kg
Ediția:1st ed. 2018
Editura: Springer International Publishing
Colecția Springer
Seria Innovation and Discovery in Russian Science and Engineering

Locul publicării:Cham, Switzerland

Cuprins

Part 1. Structure Formation Analysis of Complicated Alloys.- Kinetic Parameters and Activation Energy of Pearlitic and Bainitic Transformations Calculated by Analyzing the TTT Diagrams of Undercooled Austenite.- Alloying Addition Effect on the Structure and Behavior of a Cu-Ni-Zn Three-Component System Alloy Under Lost Wax Casting.- Structural Changes in Austenitic-Ferritic Steel 03Kh14N10K5M2Yu2T During Heating and Cooling.- Correlation of Instrumented Charpy Load-Displacement Curves with Crack Growth in API 5L Grade X80 Pipeline Steels.- Damping Behavior of Aluminum Replicated Foam.- Part 2. Non-ferrous Metals Metallurgy Due to the Refining of Secondary Raw Materials.- Recovery of Lead and Zinc From Fine Dust of the Copper Smelting Industry Using a Chelating Agent.- High-Pressure Leaching Arsenic Containing Polymetallic Copper Mattes.- Investigation of TSL Furnace Hydrodynamics Using the Cold Modeling Method.- Physical Simulation of Melt Lancing in a TROF Converter.- ThermodynamicFeatures Research of Polymetallic Sulfide Raw Material Leaching.- Investigation of Lignosulfonate Adsorption on Zinc Materials in Acidic Media.- Complex Processing of Refractory Pyrite Copper, Copper-Zinc and Polymetallic Ores on the Basis of Flotation and Combined Technologies.- Part 3. Composite Compound Materials Science in Building Engineering.- Impact of Waterproofing Permeable Capillary Mixtures on Cement Stone.- Composite Cement with a Polymer Addition.- The Manufacture of Concretes Based on Unburnt Ash Gravel.- Physical–Chemical Bases of a Glass Batch Preparation Technique.- Influence of Ion–Electron Interaction at the Metal-Oxide Melt Boundary on the Protective Properties of Enamel Coatings.- Study of Enamel Slip Particles Interaction Using Model Systems.- Peculiarities of Formation of Phase Structure and the Hydraulic Activity of High-Calcium Fly Ash.- Part 4. High-Pressure Treatment of Metals and Alloys.- Modernization of the Method of Rolling of Hot-Rolled Tubes.- New Engineering Solutions in the Production of Laminated Composite Pipes for the Oil Industry.- Precision of the Tubes Produced by Drawing and Cold Rolling.- Features of Multihole Stamping of Platinum Glass Melting Apparatus Elements.- Research on Metal Forming in the Pipe Ends Upsetting Process.- The Study of Residual Stresses and Surface Hardening in Tubes After Finishing Processes.


Notă biografică

Professor Carlos A. Brebbia is the Director of the Wessex Institute in the UK, and is renowned worldwide as the originator of the Boundary Element Method. He has written many scientific papers, is editor of many volumes and is the author or co-author of fourteen books. His current interests are in the field of strategic planning and research management. He is the founder of several International Journals and responsible for the publishing program of the Institute. He has helped the Institute to develop academic links with first class institutions around the world. Carlos is also a member of the International Committee for the awards of the Prigogine Medal and the George Green Medal.

Dr. Jerome J. Connor is Professor Emeritus of Civil Engineering at Massachusetts Institute of Technology. His research interests include computational mechanics, structural analysis, motion based structural design, and novel design methodologies for structural systems andhas taught courses in computational mechanics and structural engineering. In recent years Connor’s work has involved motion based design and damage assessment of engineering materials and he is directing a number of projects related to the applications of structural control to large civil structures as well as investigating methods to quantify damage in engineering materials.

Textul de pe ultima copertă

This book presents recent advances made in materials science and engineering within Russian academia, particularly groups working in the Ural Federal University District. Topics explored in this volume include structure formation analysis of complicated alloys, non-ferrous metals metallurgy, composite composed materials science, and high-pressure treatment of metals and alloys. The finding discussed in this volume are to critical to multiple industries including manufacturing, structural materials, oil and gas, coatings, and metal fabrication.
  • Maximizes reader understanding of materials research in Russia relevant to multiple industries including manufacturing, structural materials, oil and gas, coatings, and metal fabrication;
  • Sheds light on R&D strategies developed within the foremost Russian universities;
  • Details specific cases of issues, problems, and solutions within the Russian materials manufacturing and formulation sectors.

Caracteristici

Maximizes reader understanding of materials research in Russia relevant to multiple industries including manufacturing, structural materials, oil and gas, coatings, and metal fabrication Sheds light on R&D strategies developed within the foremost Russian universities Details specific cases of issues, problems, and solutions within the Russian materials manufacturing and formulation sectors