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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 version
( _  E( L& _/ \6 Q* c3 `. U( u; w: G* b
http://www.agpr.net/bbs/attachment/Mon_0804/132_60282_4fea64223bf98e0.jpg8 K$ [- K; |/ Y* `
4 L* D" o% g- u6 j! \3 u4 q
By J.W. Christian
4 |& I2 y9 {! b$ A+ M) H+ \) m+ J7 z' f4 T) _/ ?( ~5 J6 h
Publisher:  Pergamon
2 W# V6 b8 }/ O/ lNumber Of Pages:  1216
! t: `# f+ P! tPublication Date:  2002-11-01
9 k) y" w; l9 {  ?ISBN-10 / ASIN:  0080440193 7 R0 p8 H: d1 Q7 [8 \3 l/ U
ISBN-13 / EAN:  9780080440194 0 F* [' a0 ^4 Y: l
Binding:  Hardcover
$ Q7 F* {# M# w( V% b
7 \4 B* l7 c2 ?" b1 a: y# QContents
, O- ~% t* o& n# P7 l. a: G) Y( `Part I- |$ w) ~/ K$ q" H1 x
1. GENERAL INTRODUCTION. q' G: M$ x* U( W, w+ c# h7 M
1. Classification of Transformations
. E3 O, K1 I! _2 O, S5 U' p, Q1 {2. Characteristics of Nucleation and Growth Transformations
# a3 @# Y5 T2 p0 k; s1 f3. Characteristics of Martensitic Transformations
; C: o3 S7 r" a" o4. Isothermal Transformation Curves
. Z! o0 j% `! Q# I! ?+ k2. FORMAL GEOMETRY OF CRYSTAL LATTICES! o+ R3 ^9 }' ~- b, D
5. Description of the Ideal Crystal$ @; i) b) _  j
6. Linear Transformations of the Coordinate System+ o4 J4 g+ Q$ V
7. Affine Transformations." Homogeneous Deformation% r: R( B" H* r  z/ j2 K
8. Twin Crystals
2 a( q* T/ f- }0 l1 F# s. y9 p9. Relations between Different Lattices
- H$ t7 X1 ~9 U. Y, [! _& i10. Infinitesimal DeJormations
# w# D0 y) C+ [) e" D2 {7 r11. Stress-Strain Relations." Theory of Elasticity9 I2 e' S9 x' K) P& \% m
3. THE THEORY OF REACTION RATES5 b* }6 _% W2 m- p4 _9 p
12. Chemical Kinetics and Activation Energy
4 M, b, k- w" b* c0 R, Z13. The Reaction Rate Theory
3 y$ F! X+ v4 M- M/ `- p4 . THE THERMODYNAMICS OF IRREVERSIBLE PROCESSES# V7 }# R1 Q- V6 g
14. Microscopical Reversibility." the Onsager Reciprocal Relations
3 [' Z; b: r) c7 S* |( f15. Entropy Production in Natural Processes8 v( s) }9 F1 Q1 M) T
5. THE STRUCTURE OF REAL METALS4 `: |1 b: I6 Q6 M  R! W
16. Metallic Structures." Polymorphism& D3 C/ n+ e2 y0 [$ j
17. Point Defects in Crystals" B$ S% l3 [! J" ?; ?4 h! z$ p
18. Crystal Surfaces." the Equilibrium Structure of a Step
  z. \* P+ q7 E' A# \, \19. The Structure of Close-packed Surfaces) {3 c2 S+ Q' Y  p
20. The Equilibrium Shape of a Crystal." Wul.ff's Theorem
5 W, h; C$ j4 S2 j" Y  y21. Liquid Metals and Noncrystalline Solids5 P8 {! C: g+ O$ j/ _; Q! |
6. SOLIDS SOLUTIONS
( w8 L! d) v3 |3 q0 U5 r3 k22. Pair Probability Functions." Thermodynamic Properties
  r9 E* h9 R: n/ U( k) |' `23. The Nearest Neighbour Model." Regular Solutions
# S& K. `: v: w9 k& T$ |24. The Quasi-chemical Theory." Other Statistical Theories5 o9 p  ]: |" ?8 M" q* q
25. Misfit Energy in Solid Solutions." Sub-regular Solutions
  n* ~9 @+ w3 r- V6 |26. Ordered Structured in Alloys
1 L( k- m+ ?' s/ ~27. Fluctuations in Solid Solutions." Short-range Order and Clustering
8 v, \' u5 h+ Q, o9 _7. THE THORY OF DISLOCATIONS
# W3 Y+ A  S* s28. bltroduction." Edge and Screw Dislocations! [3 b& x/ n; t. \
29. Geometrical Properties of Dislocations/ S6 Y; |( c! F, y$ F' Z
30. Dislocations in an Elastic Medium2 S% v, G- y0 p
31. Formation and Properties o/" Crystal Dislocations
: a) K( `* J; [! C* R7 N4 l32. Partial Dislocations, Twinning Dislocations, and
: l7 J$ d  Y, @* lTransJormation Dislocations! R6 {0 ~6 c! v% j* P& a2 j
33. The Stable Dislocations o/" the Common Metallic Structure
- P& B3 w3 W& q34. Distributions of Dislocations. D8 |- k3 X% C$ ~
8. POLYCRYSTALLINE AGGREGATES
; G9 @1 H/ ]5 B  u2 r8 O% d  |35. Macroscopic Theory
- ?9 j9 q/ m3 p: K; Q! F2 M9 F/ e$ r36. Dislocation Models of Grain Boundaries: U+ C2 Z  S9 Z
37. Grain Boundary Energies
# y, D5 y: ]; {2 \8 D8 a( g38. Interphase Boundaries." Surface Dislocations* g% E' _. N: M
9. DIFFUSION IN THE SOLID STATE8 h0 E& T" y: O4 I8 Y" t
39. Mechanism 03" Atomic Migration) H) x2 y5 n: t
40. Statistical Basis of Diffusion." Fick's Law
% ^1 S2 J% j3 _) [1 ?2 b41. Phenomenological Theory of Diffusion" T4 G: D  N: L% ~* Y
42. Uphil Diffusion
+ z  D6 v- S& ^+ C' K# `' A- P) I43. Kinetic Theory of Vacancy Diffusion
( S$ S/ A5 d# I. @( \" G1 N; L0 S44. The Theory of Diffusion Coefficients
$ K& |1 n) j8 y# W# W45. Structure Sensitive Diffusion Processes( ~$ `' Y1 S- T. J, m4 e& O
1 0 . THE CLASSICAL THEORY OF NUCLEATION& W2 v# Q. d4 x! R1 f% ?# u
46. The Formation of Nuclei of a New Phase9 O! B2 P6 ?3 p' f
47. Heterophase Fluctuations." Volmer's Theory of Nucleation9 y- A7 b4 X( G" v) d' e
48. The Becker-Ddring Theory of Nucleation
& r6 o% A* ^+ d/ B" d; E. y49. Nucleation of the Solid from the Vapour or the Liquid" \8 E( t, D! z1 E6 l
50. Time-dependent Nucleation
+ y8 f/ I6 s% o5 W) N51. Hetrogeneous Nucleation and Nucleation on Grain Boundaries
( H' W0 I# a) N6 y# l52. Nucleation in the Solid State- y# e& L8 @+ R6 C
1 1. THEORY OF THERMALLY ACTIVATED GROWTH
& w, I5 A6 V; m' x, w" C2 o53. Growth Controlled by Processes at the Interface3 }, S) @9 Z+ d, _2 S! J5 `
54. Diffusion-controlled Growth0 c8 W; X! H. L
55. Linear Growth of Duplex Regions  S7 _9 e9 w: D! v
1 2 . FORMAL THEORY OF TRANSFORMATION KINETICS* q$ u! @5 U) q% F
56. Transformation Nucleated on Grain Boundaries
. r0 q5 P3 [' g7 u( {57. Analysis of Isothermal Transformation Curves3 T7 K, |' Q1 |9 w
58. Transformations with Parabolic Growth Laws
% [' Q! ]% ^) F59. Effects of Temperature." Non-isothermal Transformations
; s! x  R* t$ r# [SUBJECT INDEX (Part I)
6 ~* ~- i" e4 |' t& o% E6 oPart H
* ?: u- |, ^6 B7 n+ @# I8 R1 3 . GROWTH FROM THE VAPOUR PHASE
; L; [; _& {" N+ @; S+ W( m60. Growth of a Perfect Crystal at Low Supersaturation1 x9 o3 x" c: N0 \$ p0 n
61. Real Crystals." Frank's Theory of Crystal Growth$ u6 O/ [+ |, q, {- B
62. The Growth of Surface Coatings and Thin Films from the Vapour
8 `7 k: w; o) O2 j" J63. Growth of Whiskers, Nanocrystals, Quasi-crystals and, E5 L6 |! i2 S6 z2 N# W
Amorphous Solids from the Vapour Phase
4 L0 c# r) F# J  H" _1 4 . SOLIDIFICATION AND MELTING
) ]' f: a; _% h7 C64. The Solidification of Pure Metals
' J* R$ G- D1 X) r0 c( l; `" f65. Nucleation of the Liquid-Solid Change in Alloys
" b3 ]9 @8 J& r3 ?5 m, _% x6 J; M66. The Growth of Crystals from the Melt
  G$ @4 e% w* b- J3 d- K1 ^, R67. Growth from a Liquid Alloy
* O: m5 A! [. ~; p68. The Structure o[ Cast Ingots
, [4 u/ o* _; W3 w" \! G! f9 Y# w4 @69. Melting
# O$ p+ ^' N) `. f$ o1 _- ^15. POLYMORPHIC CHANGES
  c+ z. B. x7 X' @* t4 j* k70. Solid-state Reactions in Pure Metals
6 J) u. g0 a3 T" G' p* ^4 o) F! T71. Massive Transformations0 R8 \- S$ h5 t
16. PRECIPITATION FROM SUPERSATURATED
+ X2 A# @6 N9 r9 v$ _+ x& ]SOLID SOLUTION% J0 \: p, ^* O: D4 W  ?
72. Types of Precipitation." Spinodal Decomposition+ G6 [0 X+ @( X* ?
73. Continuous Precipitation
0 F& b) J* S3 V; [; Y1 J, Y74. Discontinuous Precipitation
; l6 H. s  n+ k+ _75. GP Zone Formation and Other Low Temperature Changes
# g  f- b2 ?/ x7 G; ~76. Coarsening and Elastic Interaction between Precipitates% x% a4 d5 F5 w, `( G9 x
1 7 . EUTECTOIDAL TRANSFORMATIONS
- K+ b  {5 d& J# K, p/ {$ Y4 `77. Eutectoidal Decomposition and T-T-T Diagrams' g/ j2 p! k: L+ z( U* P
78. The Austenite-Pearlite Transformation in Steels. W  u/ P7 b6 [, |
79. The Formation of Austenite from Two-Phase Mixtures of
: ^8 n/ ?- l2 m+ sFerrite and Cementite
/ K; V& O$ G/ z8 @; D$ NContents xix9 V" c: k: d) m8 R" b4 d
18. ORDER-DISORDER TRANSFORMATIONS
- v/ w( S6 [7 z6 L4 I+ g80. The Formation of a Superlattice
6 j& @# G. t/ R81. Ordering as a Continuous Reaction" Changes in Long-range Order3 B4 ]* Q9 G5 p* U+ ^( B
19. RECOVERY, RECRYSTALLIZATION AND GRAIN GROWTH8 |$ Q6 N$ U* N7 t% r
82. Annealing of Cold-worked Metals
" x8 O  G' ^" @" Z( y  P83. Prh~ary Recrystallkzation2 I. o$ Q) Q1 R0 G& B, w/ V6 i- |1 K$ o
84. Grain Growth, Secondary Recrystallization and Twin Formation
) s$ U- H- s' H2 0 . DEFORMATION TWINNING
4 f1 h* V6 i& g) q! a5 d85. Crystallography of Twinning
1 `: x1 ~3 w* Z8 Z8 y86. Operative Twinning Modes in Metallic Structures) o5 t  ^$ a4 w0 `7 m! f! U
87. Nucleation and Growth of Mechanical Twins/ \/ N$ d. _. T  e5 p: f3 s
88. Effects of External Variables on Twinning9 N2 O5 l# U1 ^5 f+ ]
2 1 . CHARACTERISTICS OF MARTENSITIC TRANSFORMATIONS
* V" J- D( W, @9 k89. Atomic Movements in the Transformation. ~2 _2 b$ ^! M% }9 \0 e
90. Deformation Produced by Moving Interlaces* ^0 S, {7 c! D. {
91. Effects of Stress." Thermoelastic Transformation
) V" z, C- T/ N; O  p! O2 2 . CRYSTALLOGRAPHY OF MARTENSITIC8 I) d) r% Q7 n/ b$ q7 J- `
TRANSFORMATIONS9 j5 k5 i- s% Z: `6 C! ^
92. General Description of Formal Theories
! ?& z% h' V: I# w93. The Martensitic Transformation in Steels9 v) e+ Q+ [2 Q5 S) i3 }& x5 w
94. Body-centred Cubic to Orthorhombic Transformations
: k3 H& e9 H- |. ]" f# D( H95. Other Applications of the Formal Theory; G3 t( s. i# s7 L
96. The Martensite Interface and the Fine Structure of Martensite
: ~0 |0 c4 m9 O) I5 S2 3 . KINETICS OF MARTENSITIC TRANSFORMATIONS  x1 x" U! B6 U, D$ B7 ]* z6 P
97. The Nucleation of Martensite
( g7 f0 o/ _; i# F98. Formal Kinetics of Martensite Formation
. B. Z9 K6 q: ~8 O; Z1 L
/ w" ?& B1 {0 l3 d+ J  @9 S[ 本帖最后由 gia 于 2009-8-20 13:02 编辑 ]

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