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Thin films. --- Films, Thin --- Solid film --- Solid state electronics --- Solids --- Surfaces (Technology) --- Coatings --- Thick films
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The desired properties of surface components include the improvement of different properties, such as aesthetic appearance, oxidation resistance, wear resistance, mechanical properties, electronic or electrical properties, thermal insulation, wear, triboemission and corrosion resistance through barriers. These properties can be enhanced using different methods, such as by adding a coating. Nevertheless, the bulk of the material or substrate cannot be considered independent of the surface treatment. Metal cutting is one of the general machining methods used to achieve high accuracy and productivity for metal parts. The topics of the book "Manufacturing and Surface Engineering" include the full range of surface engineering aspects, i.e., surface integrity, contact mechanics, friction and wear, coatings and surface treatments, multiscale tribology, computational methods, and optimization techniques applied in surface engineering.
Contact mechanics. --- Contact problems (Mechanics) --- Mechanics, Contact --- Mechanics, Applied
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Thin films can be used for a variety of applications. The engineering of thin films is complicated by the fact that their physics is not well understood. The vast varieties of thin film materials, their deposition, processing and fabrication techniques, optical characterization probes, physical properties, spectroscopic characterization, and properties-structure relationships are the key features of such devices and the basis of thin film technologies. Depending on the desired properties, several techniques have been developed for the deposition of thin films of metals, alloys, ceramics, polymers, and superconductors on a variety of substrate materials. The book describes several principles and applications.
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The desired properties of surface components include the improvement of different properties, such as aesthetic appearance, oxidation resistance, wear resistance, mechanical properties, electronic or electrical properties, thermal insulation, wear, triboemission and corrosion resistance through barriers. These properties can be enhanced using different methods, such as by adding a coating. Nevertheless, the bulk of the material or substrate cannot be considered independent of the surface treatment. Metal cutting is one of the general machining methods used to achieve high accuracy and productivity for metal parts. The topics of the book "Manufacturing and Surface Engineering" include the full range of surface engineering aspects, i.e., surface integrity, contact mechanics, friction and wear, coatings and surface treatments, multiscale tribology, computational methods, and optimization techniques applied in surface engineering.
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Thin films can be used for a variety of applications. The engineering of thin films is complicated by the fact that their physics is not well understood. The vast varieties of thin film materials, their deposition, processing and fabrication techniques, optical characterization probes, physical properties, spectroscopic characterization, and properties-structure relationships are the key features of such devices and the basis of thin film technologies. Depending on the desired properties, several techniques have been developed for the deposition of thin films of metals, alloys, ceramics, polymers, and superconductors on a variety of substrate materials. The book describes several principles and applications.
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The desired properties of surface components include the improvement of different properties, such as aesthetic appearance, oxidation resistance, wear resistance, mechanical properties, electronic or electrical properties, thermal insulation, wear, triboemission and corrosion resistance through barriers. These properties can be enhanced using different methods, such as by adding a coating. Nevertheless, the bulk of the material or substrate cannot be considered independent of the surface treatment. Metal cutting is one of the general machining methods used to achieve high accuracy and productivity for metal parts. The topics of the book "Manufacturing and Surface Engineering" include the full range of surface engineering aspects, i.e., surface integrity, contact mechanics, friction and wear, coatings and surface treatments, multiscale tribology, computational methods, and optimization techniques applied in surface engineering.
Choose an application
Thin films can be used for a variety of applications. The engineering of thin films is complicated by the fact that their physics is not well understood. The vast varieties of thin film materials, their deposition, processing and fabrication techniques, optical characterization probes, physical properties, spectroscopic characterization, and properties-structure relationships are the key features of such devices and the basis of thin film technologies. Depending on the desired properties, several techniques have been developed for the deposition of thin films of metals, alloys, ceramics, polymers, and superconductors on a variety of substrate materials. The book describes several principles and applications.
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Almost all processing of technologically important materials includes a process where liquid material is cooled to form a solid, called ""solidification."" In order to form a solid from an undercooled melt, the formation of crystalline nuclei and growth of these nuclei to form a solid are necessary. The process of an atom jumping from the liquid to the solid is a diffusive jump with a driving force. The book Solidification is logically developed through a careful presentation of the relevant theories and models of solidification occurring in a variety of materials. Mathematicians, chemists, physicists, and engineers concerned with melting/freezing phenomena will also find this book to be valuable.
Solidification. --- Crystallization --- Heat --- Melting points --- Solutions, Solid --- Physical Sciences --- Engineering and Technology --- Materials Science
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