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metallic properties --- metallic materials --- metals --- alloys and compounds
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The subject of this Landolt-Börnstein volume is to present data on the magnetic properties of materials under pressure. Data for magnetic single metals, disordered and ordered alloys and compounds containing 3d elements as magnetic atoms are presented. This comprehensive set of data shows crystallographic data (space group, lattice constants) and magnetic properties such as magnetic moment, magnetic transition temperature, magnetization, magnetic structure, and others. Pressure derivatives or pressure coefficients of magnetic properties are given numerically for each material. In addition, pressure dependencies of magnetic properties and magnetic phase diagrams are also given graphically. As well known, the data-compiling principle in the Landolt-Bӧrrnstein series is to choose the best reliable values from many available experimental data.
Magnetism. --- Materials. --- Magnetism, Magnetic Materials. --- Metallic Materials. --- Materials Science, general.
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In the present volume physical properties of ternary amorphous alloys are presented. For each of the 385 alloy systems the data, e.g., on density and structure, on thermal, mechanical, magnetic, electrical and optical properties, as well as on corrosion behavior, are provided in text, tables and figures. The data are published in three parts,the present 3rd part covering 148 alloy systems from Cr-Fe-P to Si-W-Zr. Also available on www.springermaterials.com .
Physics. --- Materials. --- Engineering design. --- Physics, general. --- Metallic Materials. --- Engineering Design.
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In the present volume physical properties of ternary amorphous alloys are presented. For each of the 385 alloy systems the data, e.g., on density and structure, on thermal, mechanical, magnetic, electrical and optical properties, as well as on corrosion behavior, are provided in text, tables and figures. The data are published in three parts, the present 2nd part covering 122 alloy systems from B-Be-Fe to Co-W-Zr. Also available on www.springermaterials.com .
Physics. --- Materials. --- Engineering design. --- Physics, general. --- Metallic Materials. --- Engineering Design.
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This book is the first to cover the engineering aspects of severe plastic deformation (SPD) technology used to refine grain structure in metallic materials. The fundamentals of both the well-known and novel SPD processes are explained and the engineering know-how required for successful implementation of these processes revealed. The principles of each SPD technique are explained and insight provided into the mechanics of material deformation and microstructural changes. The equipment used for SPD processing is described including machines and tools. The book covers the most popular SPD process of equal channel angular pressing, ECAP and its incremental version, I-ECAP. A separate chapter is devoted to tooling used in ECAP/I-ECAP. Another popular SPD process is high pressure torsion (HPT), which produces very good results in terms of refining grain structure but faces some technical challenges. A less known SPD process is cyclic extrusion compression (CEC), which is thoroughly explained as is twist extrusion (TE) which is a relatively new process that is showing good potential.Finally, an original SPD process of accumulated roll bonding (ARB), capable of refining grain structure in sheets, is discussed --
Plastics. --- Metallic materials. --- Plastic materials --- Plastic products --- Polymers --- Synthetic products --- Condensation products (Chemistry) --- Elastomers --- Plasticity
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This book comprises chapters on research work done around the globe in the area of artificial intelligence (AI) applications in sheet metal forming. The first chapter offers an introduction to various AI techniques and sheet metal forming, while subsequent chapters describe traditional procedures/methods used in various sheet metal forming processes, and focus on the automation of those processes by means of AI techniques, such as KBS, ANN, GA, CBR, etc. Feature recognition and the manufacturability assessment of sheet metal parts, process planning, strip-layout design, selecting the type and size of die components, die modeling, and predicting die life are some of the most important aspects of sheet metal work. Traditionally, these activities are highly experience-based, tedious and time consuming. In response, researchers in several countries have applied various AI techniques to automate these activities, which are covered in this book. This book will be useful for engineers working in sheet metal industries, and will serve to provide future direction to young researchers and students working in the area.
Metals. --- Manufactures. --- Artificial intelligence. --- Metallic Materials. --- Manufacturing, Machines, Tools, Processes. --- Artificial Intelligence.
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Daniel Greitemeier beschreibt wesentliche Einflussfaktoren auf die Werkstoffeigenschaften von additiv gefertigtem TiAl6V4 aus Sicht der Luft- und Raumfahrtindustrie. Dabei werden vier unterschiedliche additive Fertigungsverfahren miteinander verglichen. Neben der zerstörenden und zerstörungsfreien Charakterisierung erfolgt eine Abschätzung der Lebensdauer durch die bruchmechanische Modellierung der prozessbedingten Defekte und Oberflächenrauheiten. Der Inhalt Vergleich unterschiedlicher additiver Fertigungsverfahren Zerstörende und zerstörungsfreie Charakterisierung Bruchmechanische Modellierung der prozessbedingten Defekte und Oberflächenrauheiten Die Zielgruppen Dozierende und Studierende aus dem Bereich Maschinenbau, Werkstoffkunde und Fertigungstechnik Praktikerinnen und Praktiker aus dem Bereich Luft- und Raumfahrt, Fertigungstechnik und Qualitätssicherung Der Autor Daniel Greitemeier arbeitet als Werkstoffspezialist im Bereich der Triebwerksentwicklung für die Luftfahrtindustrie.
Mechanical engineering. --- Industrial engineering. --- Production engineering. --- Metals. --- Mechanical Engineering. --- Industrial and Production Engineering. --- Metallic Materials.
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This collection covers a variety of materials science topics and has contributions from leading scientists and engineers representing 8 countries and 9 international materials, metals, and minerals societies. Papers are organized into the following sections: Advanced Biomaterials Advanced Manufacturing Materials for Green Energy Materials for Infrastructure Materials for the Oil and Gas Industry Materials for Transportation and Lightweighting Minerals Extraction and Processing Nanocrystalline and Ultra-fine Grain Materials and Bulk Metallic Glasses Steels.
Metals. --- Materials science. --- Engineering—Materials. --- Metallic Materials. --- Characterization and Evaluation of Materials. --- Materials Engineering.
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Dieses Praktikerbuch bietet eine kompakte Übersicht zu wichtigen werkstoffanalytischen Verfahren, die jeweils auf einer Doppelseite kurz und übersichtlich dargestellt werden. Diese Verfahren dienen der Ermittlung von Eigenschaften und Defekten im makroskopischen, mikroskopischen und nanoskopischen Bereich. Darunter fällt insbesondere die Bestimmung der Materialzusammensetzung, der Kristallstruktur, der Phasen und der Realstruktur (z.B. Gitterkonstanten, Orientierungen, Eigenspannungen, Versetzungsdichten, Strukturdefekte) sowie weiterer werkstoffrelevanter Größen an Proben und Bauteilen. Der inhaltliche Zugang erfolgt wahlweise über die Anwendungsgebiete mit zugehörigen Verfahren oder über die Übersicht nach Verfahrensgruppen. In komprimierter Form werden die einzelnen Methodenbeschreibungen nach Anwendungen, Funktionsprinzip, Leistungsprofil und Probenpräparation untergliedert sowie mit jeweils typischen Instrumentierungs- und Applikationsbeispielen komplettiert. Das Kompendium bietet einen ersten Einstieg zur effektiven und zielsicheren Auswahl werkstoffdiagnostischer Methoden. Der Inhalt Bildgebende Verfahren.- Röntgenbeugung.- Elektronenbeugung.- Röntgenspektroskopie.- Elektronenspektroskopie.- Ionenspektroskopie.- Optische Spektroskopie.- Thermische Analyse.- Ultraschalltechnik. Die Zielgruppen Dieses übersichtlich gestaltete Werk empfiehlt sich für Ingenieure und Physiker in wissenschaftlichen Institutionen sowie in fast allen Bereichen der Industrie, vorzugsweise der Energietechnik, des Fahrzeug- und Maschinenbaus, der Luft- und Raumfahrt sowie der Mikro-und Nanoelektronik. Ebenso ist es für Studierende und Doktoranden der Werkstoffwissenschaft, der Elektrotechnik sowie der Physik hilfreich. .
Engineering—Materials. --- Materials science. --- Metals. --- Materials Engineering. --- Characterization and Evaluation of Materials. --- Metallic Materials.
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