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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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Mössbauer Spectroscopy of Iron Implanted in Zirconiaristics of zirconium alloys (3–5). However, unlike the Zr-Fe alloy system, which is rather well established (6), the knowledge of the ternary Zr-Fe-0 system is still in its infancy (7,8). Therefore, detailed understanding of the state of iron in zirconia, and — particularly — its role in oxygen and hydrogen transport, is of primary interest.
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Disorder, Randomness, and Amorphous Phasesre available. However, a unified picture for disordered solids is not yet available due to the lacking of general unified theoretical concepts, like Bloch’s theorem for regular lattices. In this paper, we will describe the amorphous state, focusing attention on possible general criteria which define
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The Displacement Cascade in Solidsthe material producing additional displacements. This process is of central importance in the study of radiation effects in solids. The use of ion beams to modify the near-surface regions of materials is an important area of research and technology where knowledge of the displacement cascade is requ
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Ion Beam Mixing Of Metals and Ceramics — Material Considerationst that a 1983 review tabulated data for 38 bilayer and 25 multilayer systems (1). The initial models for mixing focused on the dynamics of ion-solid interactions and produced models based on direct recoils, cascades, and enhanced diffusion due to radiation-produced defects.
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The Role of Chemical Driving Forces in Bombardment-Induced Compositional Changerole of the surface binding energy (1), the role of bombardment-induced Gibbsian segregation (“BIS”) (2), as well as an extended version of the present material (3). We here consider three aspects of what will be termed.We first consider how it is possible for BIS to occur at all given the small num
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Ion Beam — Induced Crystalline to Amorphous Transformations in Ceramic Materialsaining. radioactivity (1). The term “metamictisation” from the Greek meta (mixed or between) and miktos (compounded) was coined to describe the amorphization of the crystal structure of a mineral due to radiation from contained or nearby radioactive atoms. This was observed soon after von Laue’s dis
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