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Titlebook: Structure-Property Relationships in Surface-Modified Ceramics; Carl J. McHargue,Ram Kossowsky,Wolfgang O. Hofer Book 1989 Kluwer Academic

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书目名称Structure-Property Relationships in Surface-Modified Ceramics
编辑Carl J. McHargue,Ram Kossowsky,Wolfgang O. Hofer
视频video
丛书名称NATO Science Series E:
图书封面Titlebook: Structure-Property Relationships in Surface-Modified Ceramics;  Carl J. McHargue,Ram Kossowsky,Wolfgang O. Hofer Book 1989 Kluwer Academic
描述The use of ion beams for the modification of the structure and properties of the near-surface region of ceramics began in earnest in the early 19805. Since the mechanical properties of such materials are dominated by surface flaws and the surface stress state, the use of surface modification tech­ niques would appear to be an obvious application. As is often the case in research and development, most of the initial studies can be characterized as cataloging the response of various ceramic materials to a range of ion beam treatments. The systematic study of material and ion beam parameters is well underway and we are now designing experiments to provide specific information about the processing parameter - structure-property rela­ tionships. This NATO-Advanced Study Institute was convened in order to assess our current state of knowledge in this field, to identify opportunities and needs for further research, and to identify the potential of such processes for technological application. It became apparent that this class of inorganic compounds, loosely termed ceramics, presents many challenges to the understanding of ion-solid inter­ actions, the relationships among ion-beam paramet
出版日期Book 1989
关键词Helium-Atom-Streuung; Polymer; STEM; alloy; ceramics; coating; crystal; spectroscopy; thermochemistry
版次1
doihttps://doi.org/10.1007/978-94-009-0983-0
isbn_softcover978-94-010-6931-1
isbn_ebook978-94-009-0983-0Series ISSN 0168-132X
issn_series 0168-132X
copyrightKluwer Academic Publishers 1989
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Ion Beam Mixing at Metal/A1203Interfaces lack of chemical affinity, Van der Waals or electrostatic forces between the two materials (1,2). Metals having a large negative value of free energy for oxide formation show a strong adhesion to the oxide substrate (3,4), whereas metals with low oxygen affinity are weakly bonded (5–7).
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0168-132X ly 19805. Since the mechanical properties of such materials are dominated by surface flaws and the surface stress state, the use of surface modification tech­ niques would appear to be an obvious application. As is often the case in research and development, most of the initial studies can be charac
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Book 1989Since the mechanical properties of such materials are dominated by surface flaws and the surface stress state, the use of surface modification tech­ niques would appear to be an obvious application. As is often the case in research and development, most of the initial studies can be characterized as
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Ion-Beam Alloying and Thermochemistry of Ceramics at High Temperaturesthermal processes (e.g., thermochemical reactions, diffusion, and defect annealing) leading to stable-phase formation. Hot implantation metallurgy, however, is expected to be more complicated in engineering materials than in Si because three or more elements are generally involved.
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