Vasiliev / Storozhenko / Vasyliv | 8th International Materials Science Conference HighMatTech-2023 | Buch | 978-3-0364-0290-1 | sack.de

Buch, Englisch, 278 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 610 g

Vasiliev / Storozhenko / Vasyliv

8th International Materials Science Conference HighMatTech-2023


Erscheinungsjahr 2024
ISBN: 978-3-0364-0290-1
Verlag: Trans Tech Publications

Buch, Englisch, 278 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 610 g

ISBN: 978-3-0364-0290-1
Verlag: Trans Tech Publications


This book comprises the selected peer-reviewed papers presented at the 8th International Materials Science Conference HighMatTech-2023, Kyiv, Ukraine, held on October 2-6, 2023. This edition is dedicated to the latest research in the development and application of metals and alloys, ceramics and composite materials, low-dimensional and nanomaterials, films, and coatings. This collection will be useful to researchers and engineers in materials science.
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Weitere Infos & Material


Preface
Chapter 1: Properties and Processing of Structural Metals
Experimental Bench Tests on the Corrosion Resistance and the Environmental Safety of Structural Materials of the Cooling System of Nuclear Power Plant
The Iron-Carbon System: Genesis and Morphology of the Eutectic Involving Hyper-Cementite Carbide
The Role of Cell Collapse Mechanism in Mechanical Performance of Aluminium Foam Fabricated by Melt Processing
Features of Microstructural Evolution and Corrosion Behavior of Ti6Al4V Titanium Alloy Fabricated from Elemental Powder Blends
Method for the Determination of Rational Constructional and Technological Parameters for the Processes of Powder Materials Forming
Optimization and Evaluation of Mechanical and Electrochemical Properties of Ferritic Stainless Steel Welding Using Taguchi Design
Peculiarities Formation of Welded Joints under the External Electromagnetic Influence
Chapter 2: High-Entropy and Amorphous Alloys
Nanocrystallization Behaviour of Amorphous Co67Fe4Cr7Si8B14 Alloy
Estimation of the Lattice Parameter and Lattice Distortion Based on the Results of Ab Initio Study of Structural Fragments of TiVZrNbMo, TiVZrNbHf, and TiVZrNbTa Multicomponent Alloys
Thermophysical Properties of Cu-Based Subsystems of High-Entropy Alloys
Application of CALPHAD Method for Predicting of Concentration Range of Amorphization of Transition Metals Melts
Structure and Properties of Melt-Quenched Al4CoCrCuFeNi High-Entropy Alloy
Low-Temperature Elastic Properties of Molybdenum Doped Non-Equiatomic High Entropy Alloys of the Fe-Co-Ni-Cr System
Chapter 3: Protective Coatings
Microstructure and Tribological Behavior of Plasma Sprayed (Ti,Cr)C-Ni Composite Coatings
The Formation of C-S Coatings by Electrospark Alloying with the Use Special Process Media
The Structure of Boride Diffusion Coatings Produced on Selected Grades of Structural Steels
Influence of Ni Content on Microstructure and Hardness of Nickel-Graphite Abradable Seal Coatings Produced by Plasma Spraying
Structural and Tribology Properties of Ti-Al-C Coatings Deposited by Vacuum Arc Method
The Influence of Plasma Spraying Parameters on Microstructure and Porosity of Bronze-Polyester Coatings for Plain Bearings Applications
Strength and Crack Resistance Structural Criteria of Composite Coatings Produced by the Method of Multi-Chamber Detonation Spraying
Chapter 4: Ceramics and Composite Materials
Cermet Powders Based on TiAl Intermetallic for Thermal Spraying
Structural and Mechanical Properties of SiC-Rich By-Products of the Metal Grade Si Process
Effect of Crystallization Properties of Continuous Basalt Fibers on Thermal Stability of Composite Materials
Features of the Structural Formation of Tungsten Single Crystals in the Shape of Hollow Rotational Bodies
Chapter 5: Special Nanomaterials
Spark Plasma Sintering of a Ceramic Material with a LaLuO3 Perovskite-Type Structure
Modeling of Photovoltaic Characteristics of a TiO2/Porous-Si/Si-Based Heterojunction Solar Cell
Synthesis of 2D-Material(G,GO,rGO,h-BN)-Magnetic(Fe,Fe3O4)Nanocomposites
Structure and Characteristics of Opal - Bi12GeO20 and Opal - NaBi(MoO4)2 Nanocrystalline Composites


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