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[公告] 《Theory of Transformations in Metals and Alloys》2002 PDF version

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发表于 2009-8-20 11:40:43 | 显示全部楼层 |阅读模式 来自: 中国天津

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Theory of Transformations in Metals and Alloys--2002 PDF version
" b5 }( K, p$ S, V2 u+ C$ n3 M7 a& }" ^  F  g/ c# b  D
http://www.agpr.net/bbs/attachment/Mon_0804/132_60282_4fea64223bf98e0.jpg8 F+ W( M3 P$ Q- |7 S! f

/ B9 A8 F! Q- ~% f- HBy J.W. Christian
# @' t5 O& d. k. ]* ^
! Z( T! b% A7 R) H3 e9 O, LPublisher:  Pergamon , x4 F* P2 Q+ J0 `( P
Number Of Pages:  1216
: ?$ F( f9 D2 u( i' c9 s; \8 ^Publication Date:  2002-11-01
6 }3 z7 o' C: DISBN-10 / ASIN:  0080440193
' M, H- ~: D5 G: k+ CISBN-13 / EAN:  9780080440194 & @& S  J8 D4 g3 |
Binding:  Hardcover
1 N% U1 ^) E7 g
6 \6 r6 v+ R% \% b5 ^/ c5 wContents/ v$ ^: K9 y" X
Part I
" z/ P) p( ]5 U" X# I6 K: c4 J# {1. GENERAL INTRODUCTION
1 ?& H1 L) P+ E  ~' U1. Classification of Transformations- }( S: L9 h5 `- {  y' o" u
2. Characteristics of Nucleation and Growth Transformations4 @$ y# `7 f: E% b, @6 @8 e4 c. n
3. Characteristics of Martensitic Transformations0 G  D, e1 ]1 W2 q/ Y4 z
4. Isothermal Transformation Curves  s4 T8 \6 m. w( a! T
2. FORMAL GEOMETRY OF CRYSTAL LATTICES' ^' K, I5 \4 s: O5 _$ G& u  @! v
5. Description of the Ideal Crystal; P+ e# ]: u. E
6. Linear Transformations of the Coordinate System( C8 a- N* L9 J6 J* I5 [
7. Affine Transformations." Homogeneous Deformation6 B- a2 z! n4 \( A5 L- z
8. Twin Crystals
8 z# e6 @" S# K6 N8 T9. Relations between Different Lattices: f2 n8 o1 y& a1 K5 ~3 f  P7 f
10. Infinitesimal DeJormations
: p% W: m) [* F/ l1 O# q! z# k11. Stress-Strain Relations." Theory of Elasticity
: G$ [5 g/ ~3 i1 ]& W+ c3. THE THEORY OF REACTION RATES
" E! n9 N4 N& n2 ]6 e12. Chemical Kinetics and Activation Energy
9 v2 p; Z; z6 S& [13. The Reaction Rate Theory3 Q8 [- c: l6 \$ s9 @
4 . THE THERMODYNAMICS OF IRREVERSIBLE PROCESSES
- N4 y( o( R! S# k2 E( a6 e14. Microscopical Reversibility." the Onsager Reciprocal Relations
9 G" W" K* J8 Z15. Entropy Production in Natural Processes$ A; I3 w4 h: Y* }. j7 J
5. THE STRUCTURE OF REAL METALS
- F- Z' k3 k: l8 D  R# z# H16. Metallic Structures." Polymorphism7 E! t" T2 o- K) E# j6 a) Q
17. Point Defects in Crystals
% l( x- E% e8 o' J. P4 Q18. Crystal Surfaces." the Equilibrium Structure of a Step
+ Y5 D" ~6 E+ v7 c% v0 f7 p19. The Structure of Close-packed Surfaces
- \3 f% ~% L0 e: f; D+ g20. The Equilibrium Shape of a Crystal." Wul.ff's Theorem2 r& ~. s1 w5 X: X# Y. L, J0 C- L
21. Liquid Metals and Noncrystalline Solids
3 b0 g5 j5 X: f6 y  F& R! {+ q6. SOLIDS SOLUTIONS& n! g9 |( J% |0 v+ U
22. Pair Probability Functions." Thermodynamic Properties7 q2 k7 d! I/ d, A8 C5 \
23. The Nearest Neighbour Model." Regular Solutions
8 a8 J6 ^. K, o$ b# ^/ _7 G  U24. The Quasi-chemical Theory." Other Statistical Theories+ {# w  [  p6 `' k
25. Misfit Energy in Solid Solutions." Sub-regular Solutions
% Y" z' k8 a+ d, T26. Ordered Structured in Alloys0 i) u( C' r2 J* a* L4 Y
27. Fluctuations in Solid Solutions." Short-range Order and Clustering; M' @! I3 D" g. f- L1 g$ j
7. THE THORY OF DISLOCATIONS3 W  X- E6 X# I. t; e
28. bltroduction." Edge and Screw Dislocations
' i2 l  ^2 a3 |1 P  Z4 p- x$ l4 h8 q29. Geometrical Properties of Dislocations
# z7 b- j2 b" e. ~+ L4 o30. Dislocations in an Elastic Medium! |5 ?  {+ \1 l& U! S
31. Formation and Properties o/" Crystal Dislocations
+ r! f2 S# Y2 f2 a32. Partial Dislocations, Twinning Dislocations, and. p1 S2 J! g+ O% P+ Z' i& ^/ d
TransJormation Dislocations$ p2 k7 N) E: z
33. The Stable Dislocations o/" the Common Metallic Structure
$ q# C! A! Q. Y9 [34. Distributions of Dislocations- g" t9 s9 v% ~/ m0 h. b4 p
8. POLYCRYSTALLINE AGGREGATES2 @7 C/ f# s0 E( B0 w. v- Y
35. Macroscopic Theory
% c* r4 Y' l. ~* A4 \% h& I; @36. Dislocation Models of Grain Boundaries
: m5 ?3 z1 u* D/ l37. Grain Boundary Energies
) I9 K3 X& x3 [0 s0 B& L38. Interphase Boundaries." Surface Dislocations, A, p. |) J$ M2 W) _4 ~3 e9 u! c
9. DIFFUSION IN THE SOLID STATE
! B+ r" e4 R1 ]1 e) F39. Mechanism 03" Atomic Migration6 |/ u* U( Z: G3 m. n; C9 i
40. Statistical Basis of Diffusion." Fick's Law
, |, [+ q- I+ q/ n" U' K41. Phenomenological Theory of Diffusion
2 y  k' B! d% Y42. Uphil Diffusion
; T! n- u; S0 y' U$ y  y43. Kinetic Theory of Vacancy Diffusion
9 M; G  P) W  P) X44. The Theory of Diffusion Coefficients% H0 l7 m: F3 e$ j' H1 a. E
45. Structure Sensitive Diffusion Processes
9 H; F  L( K6 {" B* R* @1 0 . THE CLASSICAL THEORY OF NUCLEATION5 ~, J$ w! _; k4 Q% {* t
46. The Formation of Nuclei of a New Phase+ O& A5 ]9 c" _& T+ a- I' w
47. Heterophase Fluctuations." Volmer's Theory of Nucleation0 l( U' ^- ?# ]: `( \
48. The Becker-Ddring Theory of Nucleation
2 E7 d4 d4 J9 ]# r7 Y+ g49. Nucleation of the Solid from the Vapour or the Liquid
/ I9 r4 f  ]* a- y- w0 a' P+ A50. Time-dependent Nucleation
/ O* ?  V# D- ?0 ~: G2 V" z51. Hetrogeneous Nucleation and Nucleation on Grain Boundaries
0 D" r) C) O6 E: Y$ T" K52. Nucleation in the Solid State2 x+ n' i& A; w/ W3 L: F
1 1. THEORY OF THERMALLY ACTIVATED GROWTH
) x  Z6 @$ M8 G7 \53. Growth Controlled by Processes at the Interface
+ P* S+ Q9 w* L- n3 b54. Diffusion-controlled Growth4 C& t3 U) ?5 L- E4 a
55. Linear Growth of Duplex Regions
8 y$ B* _- q) ]7 Y/ J1 2 . FORMAL THEORY OF TRANSFORMATION KINETICS7 ]( |2 f) K, n% }- ?9 E& t
56. Transformation Nucleated on Grain Boundaries* V8 v) d+ {0 v3 P
57. Analysis of Isothermal Transformation Curves
) P, c% C' H+ ]0 _  N% e58. Transformations with Parabolic Growth Laws, e: L$ Q8 v; r
59. Effects of Temperature." Non-isothermal Transformations6 J/ _% w; s0 H# X9 ^6 W2 ]; d
SUBJECT INDEX (Part I)8 z, D/ j0 U; w; n2 Q) r4 z# t1 N
Part H
" T4 z6 ]4 x  l1 w. M) t3 N# l$ b1 f1 3 . GROWTH FROM THE VAPOUR PHASE+ u* g2 c' y9 ^8 Z4 I6 u) ^, x  m
60. Growth of a Perfect Crystal at Low Supersaturation
  U2 u" [3 N1 E" {! l" A! R61. Real Crystals." Frank's Theory of Crystal Growth' ^# R4 Q: J8 |7 Y! ?8 \5 X' A$ g: B
62. The Growth of Surface Coatings and Thin Films from the Vapour* g8 |9 m0 X' ?1 S" |. o9 ?0 g, M
63. Growth of Whiskers, Nanocrystals, Quasi-crystals and
1 p- ^% m3 [5 ~$ m& X- C- L9 C. F8 ?& ^Amorphous Solids from the Vapour Phase4 l: A0 ^0 l/ i
1 4 . SOLIDIFICATION AND MELTING, b: \; O& s8 D' u$ t: }/ g* t1 f7 T2 ]: L
64. The Solidification of Pure Metals
3 Q! I5 f" B6 V% _# i) U65. Nucleation of the Liquid-Solid Change in Alloys" p  N8 O7 w8 B# v
66. The Growth of Crystals from the Melt% {/ z+ _2 M# L/ P, M  v# ?
67. Growth from a Liquid Alloy  X7 n8 R6 M9 i7 a: u
68. The Structure o[ Cast Ingots
7 O9 @& X. U) s7 N1 b8 D0 d) F69. Melting
9 h( v) Q8 {' P5 L0 ~* E) t15. POLYMORPHIC CHANGES) ]! r% d1 d2 a! P5 h# x9 B* g
70. Solid-state Reactions in Pure Metals
. c+ H! N1 q# _9 E3 k3 y7 y71. Massive Transformations8 t/ z0 A7 i+ p% v- K. t
16. PRECIPITATION FROM SUPERSATURATED
) X  n/ R, V$ N, y/ y4 Z+ \' H9 LSOLID SOLUTION
- T4 k7 x1 K8 t" ?5 h! A72. Types of Precipitation." Spinodal Decomposition
( o4 \7 k) _2 b! v7 |( U, h73. Continuous Precipitation+ w- z$ L9 S! }9 D/ R, y
74. Discontinuous Precipitation% ]7 J: ^9 B/ d! I" d1 P* Q5 {5 @% P
75. GP Zone Formation and Other Low Temperature Changes  h0 t: @) E, h& @. p
76. Coarsening and Elastic Interaction between Precipitates4 S! [& _: u) Z! [1 M1 A
1 7 . EUTECTOIDAL TRANSFORMATIONS
& T; [& a5 K. t& S$ z  C77. Eutectoidal Decomposition and T-T-T Diagrams
& r+ w! v% G0 v! F/ B) S$ b78. The Austenite-Pearlite Transformation in Steels% G0 i5 s( P1 c3 B! z. @
79. The Formation of Austenite from Two-Phase Mixtures of, i1 d/ U5 s+ B5 ]
Ferrite and Cementite
+ [& F, S! b5 r& j3 F  |; BContents xix7 r. b6 i9 U9 \: \( J: P$ C& T
18. ORDER-DISORDER TRANSFORMATIONS
! Q4 q, ?. D9 U2 o( O/ }80. The Formation of a Superlattice
$ D: M9 k) N% ?$ ~0 O- [81. Ordering as a Continuous Reaction" Changes in Long-range Order
" Y$ j4 n1 r- V' |& ~19. RECOVERY, RECRYSTALLIZATION AND GRAIN GROWTH# j& V) ]9 }' C! W. S$ l" M2 J
82. Annealing of Cold-worked Metals
5 N  ?- y) t/ N/ r6 S83. Prh~ary Recrystallkzation
2 n3 W/ ^7 F6 D: Z6 p4 x2 l+ Q84. Grain Growth, Secondary Recrystallization and Twin Formation
/ S, N  P% i8 Y: n9 }7 \) u6 D2 0 . DEFORMATION TWINNING7 w, x) f9 N5 G
85. Crystallography of Twinning& s: }) K* x7 |) p% h1 \
86. Operative Twinning Modes in Metallic Structures
# @% I6 }& @% {; \+ b87. Nucleation and Growth of Mechanical Twins
  Q8 \. K# g4 d9 m88. Effects of External Variables on Twinning
$ h0 Y7 s# o! c$ M  S: g2 1 . CHARACTERISTICS OF MARTENSITIC TRANSFORMATIONS
2 g9 T7 `& v  a; h! a* W: b! M89. Atomic Movements in the Transformation
' X% k* ]2 d0 l/ N4 Q90. Deformation Produced by Moving Interlaces
7 M3 C% C2 I8 k0 ]8 v1 x91. Effects of Stress." Thermoelastic Transformation1 J4 K! E1 N" M
2 2 . CRYSTALLOGRAPHY OF MARTENSITIC6 V) w# e; h* @
TRANSFORMATIONS# B0 i) O- C& @
92. General Description of Formal Theories: g4 Y: \, A3 Z$ Q. T+ P! f5 ]
93. The Martensitic Transformation in Steels; t- n! x* c# c( [
94. Body-centred Cubic to Orthorhombic Transformations
, K  D, C4 Q& U! n. m8 K8 o95. Other Applications of the Formal Theory
  x- D6 K! E/ [0 H! s96. The Martensite Interface and the Fine Structure of Martensite$ P; T/ S2 x; n
2 3 . KINETICS OF MARTENSITIC TRANSFORMATIONS
  u; f# S  _% t) ]6 B  ^( ]2 F1 n/ I97. The Nucleation of Martensite
# K" t+ o  z$ f! g$ n% H) M+ u98. Formal Kinetics of Martensite Formation
- |( \2 ]! [: D. C8 R$ H+ Z; Q, g; M0 J
[ 本帖最后由 gia 于 2009-8-20 13:02 编辑 ]

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