Bibliographic Information

Characterization of corrosion products on steel surfaces

Y. Waseda, S. Suzuki (Eds.)

(Advances in materials research, 7)

Springer Berlin, 2006

1st ed.

  • : softcover

Available at  / 9 libraries

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Description and Table of Contents

Description

This book describes the fundamental aspects of materials characterization for the ferric oxyhydroxides formed on steel surfaces. Selected examples, from both the basic science and the applied engineering points of view, are presented. Of special interest is the new structural information on ferric oxyhydroxides containing a small amount of alloying elements. The text relates this to their various states and their role in corrosion processes.

Table of Contents

Corrosion Protection Function and Breakdown Mechanism of Passive Films on Stainless Steels.- Passivation Oxide Films and Rust Layers on Iron.- Semiconductor Property of Passive Films and Corrosion Behavior of Fe-Cr Alloys.- Mechanistic Study on Formation of Iron Hydroxides and Oxides with FT-IR and UV Photospectroscopy.- Structural Characterization for a Complex System by Obtaining Middle-Range Ordering.- Corrosion Mechanism of Iron from an X-ray Structural Viewpoint.- Surface Analysis of Oxides and Corrosion Products Formed on Surfaces of Iron-based Alloys.- Characterization of Rust Layers on a Plain-Carbon Steel and Weathering Steels Exposed to Industrial and Coastal Atmosphere for Years.- Synchrotron Radiation Study on Structure of Atmospheric Corrosion Products Formed on Steel Surfaces.- Analysis of Iron Rusts by X-ray Diffraction and X-ray Absorption Fine Structure Measurements.- Various Scale Analyses to Create Functioning Corrosion Products.- Moessbauer Spectroscopic Study on Rust Formed on Steel Surfaces.

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Details

  • NCID
    BA7805123X
  • ISBN
    • 3540351779
    • 9783642421532
  • LCCN
    2006927188
  • Country Code
    gw
  • Title Language Code
    eng
  • Text Language Code
    eng
  • Place of Publication
    Berlin
  • Pages/Volumes
    xvii, 297 p.
  • Size
    24 cm
  • Classification
  • Parent Bibliography ID
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