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Titlebook: Advanced Techniques for Surface Engineering; Wolfram Gissler,Hermann A. Jehn Book 1992 Springer Science+Business Media B.V. 1992 Europe.Tu

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期刊全稱Advanced Techniques for Surface Engineering
影響因子2023Wolfram Gissler,Hermann A. Jehn
視頻videohttp://file.papertrans.cn/147/146277/146277.mp4
學科分類Eurocourses: Mechanical and Materials Science
圖書封面Titlebook: Advanced Techniques for Surface Engineering;  Wolfram Gissler,Hermann A. Jehn Book 1992 Springer Science+Business Media B.V. 1992 Europe.Tu
影響因子Today‘s shortages of resources make the search for wear and corrosion resistant materials one of the most important tasks of the next century. Since the surface of a material is the location where any interaction occurs, it is that there the hardest requirements on the material are imposed: to be wear resistant for tools and bearings; to be corrosion resistant for turbine blades and tubes in the petrochemical industry; to be antireflecting for solar cells; to be decorative for architectural panels and to combine several of these properties in other applications. Surface engineering is the general term that incorporates all the techniques by which a surface modification can be accomplished. These techniques include both coating and modification of the surface by ion implantation and laser beam melting. In recent years a continuously growing number of these techniques were developed to the extent that it became more and more difficult to maintain an overlook and to understand which of these highly differentiated techniques might be applied to resolve a given surface engineering problem. A similar development is also occuring for surface characterization techniques. This volume contai
Pindex Book 1992
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Wirbel und wirbelbedingte Fluidkr?fteprocesses in the very initial stage of film formation is possible. They reflect the results of modeling using the kinetic nucleation theory or the thermodynamic approach. Tor practical systems, i.e. non-UHV conditions, alloy and compound deposition, the relation are much more complex, but the struct
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Hans Albert Richard,Gunter Kullmerrs becomes an industrial application of major importance. The ion implantation technique has steadely been extended to the intire range of materials including metals, ceramics, glasses and polymers.. This paper considers a number of areas in which ion beams are now applied, such as microelectronics,
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https://doi.org/10.1007/978-3-662-60525-7 or cathode sputtering techniques. Thermodynamic and kinetics aspects together with other basic considerations involved in evaporative deposition techniques are discussed. Evaporation of compounds and alloys can be improved using activated reactive evaporation processes. The major experimental techn
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https://doi.org/10.1007/978-3-662-60525-7tings. The application fields of these coatings are wear protection, decoration and optical interference coatings. Common features of these processes are the incorporation of reactive gas ions into the growing film and ion bombardment of the substrates before and during deposition. Ion impact facili
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https://doi.org/10.1007/978-3-662-60525-7onments. After a general introduction on thermal spraying processes, the fundamentals specific to plasma spray are described. Depending on the pressure level, the chemical composition of the environment and the type of electrical arc, the plasma spray process is divided into the following types: atm
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https://doi.org/10.1007/978-3-662-60525-7ects of heat flux, which determine the local growth conditions, are discussed together with the formation of microstructures. Special emphasis is placed upon the effects associated with rapid solidification. Finally, the concept of microstructure selection maps, necessary for any rational alloy and
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