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In the field of engineering, the ability of a finished part to fulfil its function in the intended application is closely related to properties of materials for its production. The development of new high-technology structural materials, adapted to each new application, requires knowledge of base matter properties, the regularity of changes in its microstructure and properties during processing. This volume contains results of research of the microstructures of materials, methods by which the latter are worked, the effect of interactions at the interfaces for multi-materials and how structure determines their final properties.
In the field of engineering, the ability of a finished part to fulfil its function in the intended application is closely related to properties of materials for its production. The development of new high-technology structural materials, adapted to each new application, requires knowledge of base matter properties, the regularity of changes in its microstructure and properties during processing. This volume contains results of research of the microstructures of materials, methods by which the latter are worked, the effect of interactions at the interfaces for multi-materials and how structure determines their final properties.
Series
Language
Place of publication
Zurich-Durnten
Switzerland
Target group
Professional and scholarly
Illustrations
Illustrations, unspecified
File size
ISBN-13
978-3-0357-3571-0 (9783035735710)
DOI
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Schweitzer Classification
<ul><li>Preface</li><li>Substrate Temperature Effect on Structural and Optical Properties of ZnO Thin Films Deposited by Spray Pyrolysis</li><li>Effect of Immersion Time on the Structural and Optical Properties of TiN Oxide Thin Films Obtained by Sol Gel Dip Coating Method</li><li>Strengthening of Damaged Metallic Structures: A New Numerical Model for Interfacial Stresses Analysis</li><li>Structural, Optical and Thermal Characterizations of Lithium Borate Glasses Containing the Barite</li><li>Adhesion and Corrosion of Ti, TiN and TiCrN Films Deposits on AISI 316L in SBF Solution</li><li>The Cold Rolling Effect on the Precipitation Sequence and Microstructural Changes of an Al-Mg-Si Alloy</li><li>Elaboration and Characterization of in Doped TiO<sub>2</sub> Thin Films</li><li>Structural Properties of 300 A of Iron Films Grown on Polycrystalline Substrate</li><li>Study of the Effect of Aging on Precipitation in Wire Drawn and Annealed Aluminum Alloy (AGS)</li><li>Effect of Deposition Time on Structural and Optical Properties of ZnO Thin Films Deposited by Spray Pyrolysis</li><li>ZnO Nanorods Prepared by Ultrasonic Spray Pyrolysis: Effect of Deposition Time on the Structural Morphological and Optical Properties</li><li>Study of Precipitation Hardening in Two Al-Mg-Si Alloys with and without Copper and Excess Silicon Using Kissinger and Boswell Methods</li><li>Growth of ZnO Nanorods by Template-Free Sol-Gel Dip-Coating Technique: Effect of Pre-Annealing Temperature</li><li>Microstructure and Mechanical Properties of Chromium Carbide Coatings Deposited by Magnetron Sputtering Technique</li><li>Structural and Optical Properties of PbS Thin Films Deposited by Chemical Bath</li><li>Hydrogen Transport and Metal Embrittlement Risk in Storage and Industrial Applications</li><li>A Comparative Study on the Tribological Behavior of SAE-AISI 1055 Steel and Brass (CuZn39Pb2) a Pin on Disc Type of Contact</li><li>Assessment of the Hydrophilic-Hydrophobic Balance of Alumina Oxidized at Different Temperatures via H<sub>2</sub>O and C<sub>4</sub>H<sub>10</sub> Vapor Adsorption</li><li>Effect of Thermocyclic Treatment with Different Cooling Rates on the Mechanical Characteristics of 42CD4 Low-Alloy Steel</li><li>Optical and Structural Properties of SnO<sub>2</sub> Thin Films Deposited by Spray Pyrolysis Technique: Effect of Solution Concentration</li><li>Obtaining Directly Quasi-Square Open Ring FSS Constitutive Effective Parameters by Using Coupled WCIP - Retrieval Method</li><li>Influence of Fe Doping Concentration on SnO<sub>2</sub> Layers</li><li>Effect of La Doping on ZnO Thin Films by Spray Pyrolysis</li></ul>