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Table of contents

  1. Y. Kawazoe, T. Masumoto, A.-P. Tsai, J.-Z. Yu, T. Aihara Jr.
    Pages 1-32
  2. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  3. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 101-265
  4. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 269-296
  5. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  6. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  7. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  8. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  9. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  10. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  11. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  12. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  13. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  14. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  15. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  16. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  17. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  18. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  19. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  20. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  21. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  22. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  23. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  24. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  25. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  26. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  27. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  28. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  29. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  30. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  31. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  32. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  33. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  34. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  35. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  36. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  37. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  38. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  39. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  40. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  41. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  42. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  43. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  44. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  45. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
    Pages 1-1
  46. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
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  47. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
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  48. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
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  49. Y. Kawazoe, T. Masumoto, K. Suzuki, A. Inoue, A.-P. Tsai, J.-Z. Yu et al.
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About this book

Introduction

Metallic amorphous materials are of high strength, high corrosion resistance, high permeability and other industrially important and useful properties. Furthermore, new metallic materials can be produced from metallic amorphous materials by proper crystallization processes, usually heat treatment, to meet the various industrial demands.
In subvolume A, 8327 points of formation data of 1532 ternary amorphous alloys consisting of 351 ternary systems have been extracted, classified and evaluated. Preparation methods, atmosphere for preparation of amorphous alloys, sample form and size and phase identification methods are provided. Composition data are given in phase diagrams and tables. Subvolume B is in preparation.

Keywords

corrosion crystal crystallization distribution heat magnetic material metals phase diagram

Bibliographic information

  • DOI https://doi.org/10.1007/b58222
  • Copyright Information Springer-Verlag Berlin Heidelberg 1997
  • Publisher Name Springer, Berlin, Heidelberg
  • eBook Packages Physics and Astronomy
  • Print ISBN 978-3-540-60507-2
  • Online ISBN 978-3-540-47679-5
  • Series Print ISSN 1615-1925
  • Series Online ISSN 1616-9549
  • Buy this book on publisher's site