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  1. Tool Steels by Yu. Geller

    This is a fundamental and comprehensive reference book on tool steels.

    It discusses in great detail the composition and properties of numerous grades of tool steels manufactured in the USSR and other countries for making cutting tools, hot- and cold-forming dies, measuring instruments, surgical tools, etc.

    The first Russian edition of the book was published in 1945. Since then, it has undergone four revised and renewed editions (1955, 1961, 1968, and 1975), each updated by the author to reflect advancements in the field. Recommended as a textbook for higher education students and a reference book for engineers, this work has established itself as an invaluable resource.

    The present English edition has been specially prepared by the author to include the latest materials published in the USSR and other countries since the last Russian edition.

    The late Prof. Yu. A. Geller, Dr. Sc. (Eng.), was a prominent specialist in the field of materials science. For over 20 years, he served as the Head of the Chair of Materials Science and Heat Treatment of Metals at the Moscow Institute of Machine Tools. His teaching and research career in the field spanned more than 40 years.

    Prof. Geller’s published works include approximately 280 articles and eight monographs and textbooks. Among his notable works is The Science of Materials (co-authored with Prof. A. G. Rakhstadt), which was recently translated into English by Mir Publishers. Many of his articles were published internationally, including in the USA, Great Britain, France, and other countries.

    Translated from the Russian by V. V. Afanasyev

    You can get the book here and here

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    CONTENTS

    Preface to the English Edition

    Part One
    Structures and Properties of Tool Steels

    Chapter 1. Characteristics, Classification and Compositions of Tool Steels

    1. General Characteristics of Tool Steels
    2. Classification by Properties
    3. Classification by Application
    4. Compositions of Tool Steels
    5. Effect of Steelmaking Conditions on Properties of Tool Steels

    Chapter 2. Properties of Tool Steels
    6. Durability Properties
    A. Principal Properties of Tool Steels
    7. Requirements for the Properties of Tool Steels
    8. Hardness
    9. Resistance to Plastic Deformation
    10. Strength. Brittle Fracture Resistance
    11. Fatigue Fracture Resistance
    12. Toughness. Resistance to Dynamic Loads
    13. Thermal Stability (Red Hardness)
    14. Thermal Fatigue Resistance
    15. Physical Properties (Heat Conductivity, Thermal Expansion, Coefficient of Friction, Adhesion)
    16. Chemical Properties. Interaction with Worked Material
    17. Wear Resistance
    18. Hardenability
    B. Technological Properties of Tool Steels
    19. Workability
    20. Overheating Resistance
    21. Resistance to Decarbonization, Oxidation and Deterioration of Surface Layer
    22. Hardening Capacity
    23. Deformation of Tools
    24. Cracking Resistance
    25. Machinability and Grindability

    Chapter 3. The Structure of Tool Steels. Methods of Analysis
    26. As-Annealed Steel. Pearlite
    27. α → γ Phase Transformation
    28. Effect of Martensite on Steel Properties
    29. Grain in Steels
    30. Carbide Phases
    31. Intermetallic Phases
    32. Residual Austenite
    33. Graphite in Tool Steels

    Part Two
    Composition and Heat Treatment of Tool Steels

    Chapter 4. Non-Thermostable Steels of High Hardness
    A. Composition and Properties
    34. Typical Properties
    35. Alloying
    36. Steels of Low Hardenability
    37. Steels of Elevated Hardenability
    38. Steels of High Hardenability
    B. Hot Mechanical Treatment and Heat Treatment
    39. As-Received Steels
    40. Heating Conditions for Hot Forming
    41. Homogenizing, Annealing and High-Heat Tempering
    42. Preliminary Hardening and Tempering
    43. Hardening
    44. Induction Hardening
    45. Sub-Zero Treatment (Cryogenic Quenching)
    46. Steel Tempering
    47. Thermomechanical Treatment
    48. Heat Treatment of Large and Shaped Tools
    49. Defects of Heat Treatment and Their Prevention

    Chapter 5. Non-Thermostable Steels of Elevated Toughness
    50. Composition and Properties. Alloying
    51. Steels of Low Hardenability
    52. Steels of Elevated Hardenability
    53. As-Received Steels
    54. Thermal Conditions for Hot Forming
    55. Annealing, High-Heat Tempering and Preliminary Hardening
    56. Hardening
    57. Thermomechanical Treatment
    58. Tempering
    59. Heat Treatment of Shanked Tools

    Chapter 6. Semi-Thermostable Steels of High Hardness
    60. Composition and Properties. Alloying
    61. Steels of Increased and High Wear Resistance
    62. Corrosion-Resistant Steels
    63. Temperatures for Hot Forming
    64. Heat Treatment of Semi-Thermostable Steels

    Chapter 7. Semi-Thermostable Steels of Elevated Toughness
    65. Composition and Properties. Alloying
    66. Steels Retaining a High Strength at Temperatures up to 350–375 °C
    67. Steels Retaining a High Strength at Temperatures up to 400–450 °C
    68. Hot Mechanical Working
    69. Heat Treatment

    Chapter 8. Carbide-Strengthened Thermostable Steels of High Hardness
    70. Composition and Properties. Alloying
    A. Phase Composition, Structure and Transformations in Carbide-Strengthened Steels
    71. Phase Composition
    72. The Structure of Cast, Deformed and Annealed Steel
    73. Transformations on Heating. Their Effect on Steel Structure and Properties
    74. Transformations on Cooling. Their Effect on Steel Structure and Properties
    75. The Structure and Properties of Tempered Steel
    B. High-Speed Steels of Moderate Thermal Stability
    76. Tungsten Steels
    77. Tungsten-Molybdenum and Molybdenum Steels
    C. High-Speed Steels of Elevated Thermal Stability
    78. High-Carbon Steels
    79. Nitrogen-Alloyed Steels
    80. High-Vanadium Steels
    81. Cobalt Steels
    82. Steels of Reduced Thermal Stability
    D. Steels in Cast Tools
    83. Composition and Applications
    E. Hot Mechanical Treatment and Heat Treatment
    84. High-Speed Steels as Delivered
    85. Hot and Low-Temperature Working
    86. Homogenizing Treatment
    87. Annealing
    88. Preliminary Hardening and Tempering
    89. Hardening
    90. Induction Hardening
    91. Tempering
    92. Thermomechanical Treatment
    93. Treatment of Welded and Tipped Tools
    94. Faults in Heat Treatment and Their Prevention

    Chapter 9. Intermetallic-Strengthened Thermostable Steels of High Hardness
    95. Structure and Properties
    96. Steels of High Thermal Stability
    97. Steel of Elevated Thermal Stability
    98. Corrosion-Resistant Steel of Reduced Thermal Stability
    99. Hardening Conditions for Intermetallic-Strengthened Steels

    Chapter 10. Thermostable Steels of Elevated Toughness. Die Steels
    100. Composition and Properties. Alloying
    A. Die Steels of Moderate Thermal Stability
    101. Carbide-Strengthened Steels
    102. Intermetallic-Strengthened (Maraging) Steels
    B. Die Steels of Elevated Thermal Stability
    103. Carbide-Strengthened Steels
    104. Corrosion-Resistant Steels
    C. Die Steels of High Thermal Stability
    105. Properties and Applications
    D. Hot Working and Heat Treatment, Cast Dies
    106. As-Delivered Steels; Conditions for Hot Working and Heat Treatment
    107. Defects of Heat Treatment and Their Prevention
    E. Steels and Alloys for Operation at High Temperatures
    108. Intermetallic-Strengthened Austenitic Steels and Alloys
    109. Alloys of Refractory and Other Metals

    Chapter 11. Surface Layer of Tools. Defects and Improvement
    A. Methods for Improvement of Surface Layer
    110. Low-Temperature Cyaniding
    111. Nitriding and Nitrocementation
    112. Sulphocyaniding and Sulphonitriding
    113. Oxidation
    114. Cementation and High-Temperature Cyaniding
    115. Bonding
    116. Chromizing
    117. Electrolytic (Galvanic) Chrome-Plating
    118. Precipitation of Titanium Carbides
    119. Welding-On of Tools
    B. Defects of Surface Layers
    120. Decarbonized Layer
    121. Bright Layer
    122. Dark (Burnt) Layer

    Part Three
    Selection of Tool Steels and Their Heat Treatment

    Chapter 12. Selection of Steel Composition and Heat Treatment for Cutting Tools
    123. Steels for Metal-Cutting Tools
    124. Steels for Machining Organic Materials

    Chapter 13. Selection of Steel Composition and Heat Treatment for Cold-Forming Tools
    125. Requirements for Steels for Cold-Forming Tools
    126. Steels for Die-Forging and Knurling Die Tools
    127. Steels for Cold Forming of Sheet and Wire
    128. Steels for Pneumatic Tools and Chisels

    Chapter 14. Selection of Steel Composition and Heat Treatment for Hot-Forming Tools
    129. Requirements for Steels for Hot-Forming Tools
    130. Steels for Hammer Dies and Heading Dies
    131. Steels for Pressing, Piercing and Drawing Dies
    132. Steels for Knurling Tools
    133. Steels for Cutters and Saws for Hot Cutting

    Chapter 15. Selection of Steel Composition and Heat Treatment for Moulds for Pressure Casting, Liquid-Metal Stamping and Pressing
    134. Steels for Moulds for Pressure Casting and Liquid-Metal Stamping
    135. Mould Steels for Casting Inorganic Materials
    136. Mould Steels for Pressing Plastics

    Chapter 16. Selection of Steel Composition and Heat Treatment for Precision Tools
    137. Requirements to Be Met by Steels. Heat Treatment
    138. Steels for Measuring Instruments
    139. Steels for Cutting Tools

    References

    Name and Subject Index

    #metallurgy #sovietLiterature #steelManufacture #STEELS
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