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

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Theory of Transformations in Metals and Alloys--2002 PDF version8 M) q+ s0 @6 T. b5 N

8 R8 x2 d# ?% F3 whttp://www.agpr.net/bbs/attachment/Mon_0804/132_60282_4fea64223bf98e0.jpg
* {4 c4 k' L$ j4 a) t6 T0 v6 y4 x0 p; w: S$ _
By J.W. Christian
4 L( B2 [2 a5 N2 p* ?5 e: c% Z8 G( H7 q7 [5 D) C
Publisher:  Pergamon 3 `- t- C4 e; T% F6 L
Number Of Pages:  1216
  u4 O, @( ], y2 cPublication Date:  2002-11-01 ( A# R( V: z* L
ISBN-10 / ASIN:  0080440193 + i8 F* `+ Q" p; y9 M6 w
ISBN-13 / EAN:  9780080440194 . y/ d$ d$ F  P% x% b
Binding:  Hardcover
0 K9 f9 S& x, a5 Q; @* U& x& U. \2 [4 z; W7 `$ _( Z- u
Contents
  C( G( P3 A; C) SPart I4 W+ z, M0 s) O! y8 W2 V
1. GENERAL INTRODUCTION
* |; ]: M/ P& b4 p$ v1. Classification of Transformations0 a" f: O/ [: `0 ^, z- W  I
2. Characteristics of Nucleation and Growth Transformations
! Z4 \4 _' w' W) f! Z3. Characteristics of Martensitic Transformations% |$ Q, m. b! @- D) I& {' k
4. Isothermal Transformation Curves' |$ ^" e' t# E5 J
2. FORMAL GEOMETRY OF CRYSTAL LATTICES
: e% X1 K7 L& E5. Description of the Ideal Crystal! O* P" i- j; Z. I$ a
6. Linear Transformations of the Coordinate System, |' ?( V8 S- `3 }8 b$ L3 K# g
7. Affine Transformations." Homogeneous Deformation' @3 F/ b& p# @9 t, G% S
8. Twin Crystals: F1 I, U: z0 }9 c7 S# q
9. Relations between Different Lattices8 y0 i: r. u1 ]- y4 K
10. Infinitesimal DeJormations
7 K" o; A& }, N- W- B0 O+ F11. Stress-Strain Relations." Theory of Elasticity# C9 Y, y# \3 j
3. THE THEORY OF REACTION RATES
2 h6 g: r  c% C, n& G( s8 f8 E; Y12. Chemical Kinetics and Activation Energy
6 \# [1 [/ ?& {, u3 e" E# V13. The Reaction Rate Theory, N, k0 T( e) J) I) V" O- d) J
4 . THE THERMODYNAMICS OF IRREVERSIBLE PROCESSES6 _% y: }9 Q0 }/ s6 I+ s1 @2 y0 x
14. Microscopical Reversibility." the Onsager Reciprocal Relations& ?' c* ?% I/ _/ ^* d
15. Entropy Production in Natural Processes* r. w, _" ?6 z: \" C+ Q
5. THE STRUCTURE OF REAL METALS9 t! ?% X: m; s& f
16. Metallic Structures." Polymorphism4 A; s  g0 A4 G, f
17. Point Defects in Crystals
* w' x* H! h9 S! L* T+ k18. Crystal Surfaces." the Equilibrium Structure of a Step, e" e0 D8 n  W
19. The Structure of Close-packed Surfaces
1 S8 U1 \# z" T' @2 q( h20. The Equilibrium Shape of a Crystal." Wul.ff's Theorem
% p- K9 r( \; L3 b/ ^6 p1 L/ v2 l; v21. Liquid Metals and Noncrystalline Solids
4 k9 k  m! o3 |( L; \1 Q* x6. SOLIDS SOLUTIONS
: Y  P4 J3 M$ Z  h! Y$ A$ |22. Pair Probability Functions." Thermodynamic Properties
0 \. ?- l, n( }23. The Nearest Neighbour Model." Regular Solutions( A: a! K+ w% q# ~. @
24. The Quasi-chemical Theory." Other Statistical Theories/ `, _: w( q- Y5 R0 W# j" o1 b
25. Misfit Energy in Solid Solutions." Sub-regular Solutions6 F4 y$ V' m# r; B- {
26. Ordered Structured in Alloys, s7 y0 z8 w# Q! X7 g
27. Fluctuations in Solid Solutions." Short-range Order and Clustering
! Y6 z/ K; ~1 \- i; w4 L, a0 \" k7. THE THORY OF DISLOCATIONS
7 z6 a2 K  w3 G- Z" U/ F28. bltroduction." Edge and Screw Dislocations
" v: i, T4 p8 a! s; n2 o2 @3 M29. Geometrical Properties of Dislocations
7 v4 t" d: s# c! Z! W$ I30. Dislocations in an Elastic Medium0 a/ c/ v* z0 b- O, \
31. Formation and Properties o/" Crystal Dislocations4 j& ^& j: B3 V4 g" w- h
32. Partial Dislocations, Twinning Dislocations, and- T/ c2 C: y: G3 s3 J. t7 U( o
TransJormation Dislocations
$ X. E, `" w7 Q9 W6 M33. The Stable Dislocations o/" the Common Metallic Structure
2 m2 }" u, A5 n6 k$ s; ^34. Distributions of Dislocations' [9 L# A/ t. t* m3 l4 H. c: N
8. POLYCRYSTALLINE AGGREGATES
; \8 c6 G" g! \, U3 h35. Macroscopic Theory  J( l4 C1 T* e5 z1 M: E, D
36. Dislocation Models of Grain Boundaries0 D$ v) s8 u7 Q, M- a
37. Grain Boundary Energies3 a8 d' c: @( K" R6 o  {
38. Interphase Boundaries." Surface Dislocations
) G" A2 a. Y: @& b9. DIFFUSION IN THE SOLID STATE
( m3 f+ D/ _3 L: |- |! R+ N. h39. Mechanism 03" Atomic Migration
( v0 Z8 I3 E3 W40. Statistical Basis of Diffusion." Fick's Law
- A) T/ Y1 w! M2 {41. Phenomenological Theory of Diffusion8 N1 P) }0 ^6 q1 k5 U, \7 P3 X
42. Uphil Diffusion$ J( I: q1 N; W* ^1 q
43. Kinetic Theory of Vacancy Diffusion
& w5 H; {% g" J7 A8 [7 d9 x6 K' ]44. The Theory of Diffusion Coefficients  p) w% n$ `* j5 V' e
45. Structure Sensitive Diffusion Processes
3 Q8 T  {, Z  n) s1 W1 0 . THE CLASSICAL THEORY OF NUCLEATION9 ^' l6 W' A$ }2 x
46. The Formation of Nuclei of a New Phase0 z" G+ v( D: `& @5 |, ?
47. Heterophase Fluctuations." Volmer's Theory of Nucleation: Q4 ^- N8 }5 p: J0 F, T
48. The Becker-Ddring Theory of Nucleation
/ o4 i. s% _8 I0 [' C49. Nucleation of the Solid from the Vapour or the Liquid
: m% ]/ g5 I" [- z" ^- D$ b50. Time-dependent Nucleation- q( ?$ s3 G% T& N! |* ^+ M
51. Hetrogeneous Nucleation and Nucleation on Grain Boundaries
; z$ c0 H/ N) E7 {' v0 Z/ g52. Nucleation in the Solid State
0 ^& T# K% t' n1 1. THEORY OF THERMALLY ACTIVATED GROWTH
3 n8 T& x' s) p9 R. n, c53. Growth Controlled by Processes at the Interface
& F3 T7 K( Z& X% Q% |54. Diffusion-controlled Growth
. M- j" Z5 {. x6 N6 H55. Linear Growth of Duplex Regions0 l* L) a- J! a* ^2 V
1 2 . FORMAL THEORY OF TRANSFORMATION KINETICS9 Y; s$ M1 C/ R$ U
56. Transformation Nucleated on Grain Boundaries
) n9 f. t, c& k5 C* x: W57. Analysis of Isothermal Transformation Curves! u# ^: Q$ }) \: H" r8 m- h
58. Transformations with Parabolic Growth Laws& A0 ]# H* ]; R& H- s) @2 `3 L& Q
59. Effects of Temperature." Non-isothermal Transformations
6 h2 X- d3 P! j2 `  _% |7 ~SUBJECT INDEX (Part I)8 x4 o8 j3 j# x0 E+ k8 z# ^+ F  Z6 ]  Q
Part H
, {( v5 I9 o) \2 k( p9 {7 l1 3 . GROWTH FROM THE VAPOUR PHASE
! }: R6 Y3 k4 j6 B1 @, Y60. Growth of a Perfect Crystal at Low Supersaturation
1 v2 w% t! ~% y! p0 Z61. Real Crystals." Frank's Theory of Crystal Growth
# t" M9 [  ^* M0 @; K9 D  S: a62. The Growth of Surface Coatings and Thin Films from the Vapour
, e+ Q0 j$ J' @& ^. A63. Growth of Whiskers, Nanocrystals, Quasi-crystals and
. h2 q4 H6 x% mAmorphous Solids from the Vapour Phase/ d: z6 p& T. o* O( q( E
1 4 . SOLIDIFICATION AND MELTING
" f1 ^6 G6 `' _9 S64. The Solidification of Pure Metals3 A( }) j* K# W0 w: i: q  N
65. Nucleation of the Liquid-Solid Change in Alloys
2 f; |- C) G7 S, z% |8 `. B66. The Growth of Crystals from the Melt
) P# @  ?2 x' Q! l7 S67. Growth from a Liquid Alloy$ H' D# p8 [0 b/ D0 d
68. The Structure o[ Cast Ingots
* U" Y" |8 K" t; S! ~/ ~69. Melting/ N5 c5 {+ V  z: g8 Z. q, p
15. POLYMORPHIC CHANGES
& w" r# F8 Q; ?& N7 ?+ E1 F70. Solid-state Reactions in Pure Metals
: C7 P! j2 a. K6 }: o* F71. Massive Transformations
% c  u3 C2 k( o: |% @16. PRECIPITATION FROM SUPERSATURATED. [& r  }6 }! \# j
SOLID SOLUTION( V2 L% I- T, m+ S! y/ H. T
72. Types of Precipitation." Spinodal Decomposition. N" i5 p! F$ S
73. Continuous Precipitation6 ~  n: ?2 n2 A: v8 W
74. Discontinuous Precipitation
9 g' r/ N3 V8 Y: y$ Q- _. T75. GP Zone Formation and Other Low Temperature Changes
2 e0 ~2 V/ d; P$ z; x, ^; N76. Coarsening and Elastic Interaction between Precipitates! {' x, K% T8 J# a: v7 A2 I& y; B
1 7 . EUTECTOIDAL TRANSFORMATIONS
+ s2 E9 d5 l- V/ M+ j/ V7 K8 L* P77. Eutectoidal Decomposition and T-T-T Diagrams2 O! g" a4 F9 g- a4 j
78. The Austenite-Pearlite Transformation in Steels2 O- ?- D5 Q3 T  N/ v
79. The Formation of Austenite from Two-Phase Mixtures of1 M6 H$ F0 U- |
Ferrite and Cementite) N4 K8 E* i. ^2 e/ e/ L. a7 q
Contents xix/ |9 U3 O9 Q9 G' r. U; J
18. ORDER-DISORDER TRANSFORMATIONS
0 k+ T, h# D1 h% n5 v, B) Q80. The Formation of a Superlattice
1 z" q7 V% N2 T* {81. Ordering as a Continuous Reaction" Changes in Long-range Order3 b. D! _6 |  {& L' J0 C( P, V& K
19. RECOVERY, RECRYSTALLIZATION AND GRAIN GROWTH
6 Q; w9 K" g) W, T: r+ t* t82. Annealing of Cold-worked Metals
( i* ?4 t# L# d3 Y% y9 n83. Prh~ary Recrystallkzation
9 d' j1 W7 W- D84. Grain Growth, Secondary Recrystallization and Twin Formation
* [1 X$ o7 X$ v( _2 0 . DEFORMATION TWINNING/ F8 h+ I+ D6 m$ T4 G; D& j- x
85. Crystallography of Twinning
, B6 c/ R5 n# a- ~) P8 S86. Operative Twinning Modes in Metallic Structures
# Z5 r- O' z+ R1 `0 Q# [! f87. Nucleation and Growth of Mechanical Twins% w/ E( }6 u, x4 U8 z; [
88. Effects of External Variables on Twinning
7 @' W, s  |0 B* R: S1 h2 1 . CHARACTERISTICS OF MARTENSITIC TRANSFORMATIONS
0 O  e- N  f. y( L0 j  p$ ~89. Atomic Movements in the Transformation" {! ^* Y0 _+ t! D7 ?9 n
90. Deformation Produced by Moving Interlaces9 W. H- g7 m: c+ g: W3 N. |
91. Effects of Stress." Thermoelastic Transformation* j9 a5 X' J# i9 l' a
2 2 . CRYSTALLOGRAPHY OF MARTENSITIC
" y( V5 h" f3 X7 J# mTRANSFORMATIONS
0 w" c( V, g) H, T) C$ l92. General Description of Formal Theories
' {" F2 d# m: U# @/ M. Y' w( I93. The Martensitic Transformation in Steels- _' k0 P1 k; N# m9 S  m
94. Body-centred Cubic to Orthorhombic Transformations  V$ @: u. e/ w$ y- T! b
95. Other Applications of the Formal Theory" ]$ b0 s& H3 N: K+ T, N* G3 `
96. The Martensite Interface and the Fine Structure of Martensite
% |- l3 s0 G& ~. T1 t2 3 . KINETICS OF MARTENSITIC TRANSFORMATIONS
) g( L9 q8 }' Z  M& y+ G97. The Nucleation of Martensite
% N& E5 [- `) p# t$ x0 U98. Formal Kinetics of Martensite Formation# s; l: J% c' J! P: f4 t9 h4 Z. F3 O5 w

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