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Table of contents
& v$ z) G4 K g/ K: ~. N/ D. N+ e, j5 Y. u6 D' g! ~
CHAPTER 1 Structure of Materials8 g2 ^, R" l6 n; {: y% |9 i
Electronic Structure of Selected Elements) u, r6 W- i5 m* X5 K; G; @# b
Available Stable Isotopes of the Elements
+ i4 D, k$ `5 x: h8 Q% JPeriodic Table of the Elements
5 l6 f0 _; V% H" c* I, q6 {' ]3 JPeriodic Table of Elements in Metallic Materials5 M3 u" ?8 H5 t) V8 n) i8 V7 |
Periodic Table of Elements in Ceramic Materials' g6 m5 Y6 p+ t
Periodic Table of Elements in Polymeric Materials3 o# G7 c9 d. l/ T" I, W
Periodic Table of Elements in Semiconducting Materials
' W* T/ o( h; }& s: U7 iPeriodic Table of Elements in Superconducting Metals4 }3 Z% f* b D5 a. u4 z4 ^, J/ I
Atomic and Ionic Radii of the Elements4 m. _$ c$ l4 ?, Y" ~6 x+ A
Bond Length Values Between Elements z* _* Q# g7 _6 p
Periodic Table of Carbon Bond Lengths (?). O4 s: ^) i( g5 ?; t
Carbon Bond Lengths
, k1 D8 P4 u) t0 OCarbon Bond Lengths in Polymers
) M8 k' [% t! M% MBond Angle Values Between Elements9 o+ @: W4 _. Z
Key to Tables of Crystal Structure of the Elements5 H1 }1 Q8 C7 x! L! D! j
The Seven Crystal Systems, q6 ~: B5 n& z5 [( Q% s
The Fourteen Bravais Lattices9 h+ S X) x+ r% E9 s9 D( z( }5 T
Periodic Table of the Body Centered Cubic Elements: t, Z6 p" j; @ P: O! t; n: I
Periodic Table of the Face Centered Cubic Elements
- @) V8 c+ ]. j6 j) [0 l! EPeriodic Table of the Hexagonal Close Packed Elements( A" h/ b8 \8 k1 S. v+ E7 r! S. Q+ q
Periodic Table of the Hexagonal Elements
0 M( c" G- q2 @$ A7 t$ N. H) S) p$ f
Structure of Ceramics" ?6 H; Q4 n$ @7 C. E0 ]- ]
Atomic Mass of Selected Elements5 S1 g' b* p! ^4 `. q0 z
Solid Density of Selected Elements; J2 ?5 m4 @# X# \9 h' Q
Density of Iron and Iron Alloys
- p4 |8 Y; b# J }( E. g" \* }Density of Wrought Stainless Steels7 s& _0 e E* L+ Y
Density of Stainless Steels and Heat-Resistant Alloys) _% g+ m2 ~* X$ G c$ m
Density of Aluminum Alloys
+ f, ^& V* E. R: ~: U. mDensity of Copper and Copper Alloys% V& r" h8 M) R- A( u) Z7 E+ s
Density of Magnesium and Magnesium Alloys
0 v) Z. T' O6 H" ~9 ]" Y% O5 _Density of Nickel and Nickel Alloys
. [# r) O: M! m+ Y1 y! h$ E- hDensity of Lead and Lead Alloys
I' P3 j: H# j3 ^5 p- ]Density of Tin and Tin Alloys
" S. j4 C1 J) X; w- \Density of Wrought Titanium Alloys( ^2 \% o5 b" U; H% q b$ q
Density of Titanium and Titanium alloys
# j* J) H! H2 p8 h3 [- i. z* VDensity of Zinc and Zinc Alloys# e8 U: q$ b# j5 c# G2 A) I
Density of Permanent Magnet Materials
3 S& h) Y5 z% E% O4 S- O: EDensity of Precious Metals
% ]# v, l7 V0 D, q# d5 ? ~Density of Superalloys
- g, V3 {6 q: O" F& _1 q* NDensity of Selected Ceramics; N, u5 B* O2 o$ j, U" y V# j
Density of Glasses. P3 n; p1 U$ ?/ R
Speci?c Gravity of Polymers- O0 L7 B& x/ R8 K2 b
Density of 55MSI Graphite/6061 Aluminum Composites
0 W( V9 x8 a; qDensity of Graphite Fiber Reinforced Metals b; |8 L7 L, p) N) z
N Composites! c" I7 P3 q2 P8 E% Z O# R
Density of Si
) X9 _& b+ }, \, P0 ^8 t% B3 4
4 M8 G4 _! t0 BCHAPTER 2 Composition of Materials/ _! J; T8 G* ]4 T; J; f, M% C2 U
Composition Limits of Tool Steels
8 X8 p& m3 G& N" a Y7 ~4 v" y) qComposition Limits of Gray Cast Irons
! N( f2 q5 [+ _5 W' MComposition Limits of Ductile Irons1 ?- x* f5 t" C- C% ^- i5 i
Composition Ranges for Malleable Irons
4 N ?1 {4 q' ~Composition Ranges for Carbon Steels0 j9 f# B& P) C1 e9 v h# E3 S0 O
Composition Ranges for Resulfurized Carbon Steels* P& C% S/ {9 d+ d
Composition Ranges for Alloy Steels
/ p A# E! v. K# O9 g# M, K$ a3 ]5 C) V4 {4 ?2 \0 L3 v9 F
Composition of Stainless Steels1 \3 g) ]- t# q
Composition of Wrought Coppers and Copper Alloys2 D) t+ f; t" b1 {! Q' c
Classi?cation of Copper and Copper Alloys# f7 g2 ^4 b; m. k. m+ y- F2 q2 e
Composition Ranges for Cast Aluminum Alloys4 z4 y0 Z" i6 i
Composition Ranges for Wrought Aluminum Alloys
# T4 N# h8 k( i2 E% d. }Composition of Tin and Tin Alloys
! s8 Q# A3 A1 G+ o) {# o1 MCompositions of ACI Heat-Resistant Casting Alloys
0 P& M$ x3 d TComposition of Zinc Die Casting Alloys# H0 g$ `+ ]/ U& c9 ~, T
Compositions of Wrought Superalloys
( Q/ W' y3 j( x, D. h/ ]" _, eTypical Composition of Glass-Ceramics
. Z4 p1 K$ |9 `CHAPTER 3 Phase Diagram Sources
- L# f6 p& _; | D0 p/ @. r7 ^Phase Diagram Sources9 p5 a3 Q4 F9 p% H
CHAPTER 4 Thermodynamic and Kinetic Data( [. b- g5 }/ T" L, H( e# E# M
Bond Strengths in Diatomic Molecules$ a3 j$ `4 M3 A3 A3 z+ `
Bond Strengths of Polyatomic Molecules
9 U4 F: z& N; V( g) Q3 p) LSolubility of Copper and Copper Alloys
" O9 o6 a; }; y- b9 S8 u& yHeat of Formation of Inorganic Oxides
/ ]* c, V# q* A" f) x) r+ L+ hPhase Change Thermodynamic Properties for The Elements
2 T$ @0 O# V/ O% W$ {3 FPhase Change Thermodynamic Properties of Oxides
) o$ x5 T5 F5 f; t) W# oMelting Points of the Elements
0 t& x6 L& ~' P& ?3 {Melting Points of Elements and Inorganic Compounds
2 K7 j( V; Q7 `, k5 T4 b+ P! }Melting Points Of Ceramics! q6 x5 A( A& t# a& l" W
Heat of Fusion For Elements and Inorganic Compounds
6 U& H$ I& ~6 W3 C" ]3 fHeats of Sublimation of Metals and Their Oxides
5 {/ {8 f9 o/ N) ~& O+ h9 o+ x+ @Key to Tables of Thermodynamic Coef?cients
4 y( y& N1 @ ]- p# C) OThermodynamic Coef?cients for Selected Elements
6 r; x0 |5 ^* p2 I JThermodynamic Coef?cients for Oxides- X# X6 ?# _, h5 C- m; s
Entropy of the Elements
, ^, g8 A8 B% p6 a3 bVapor Pressure of the Elements at Very Low Pressures9 V& R% _. L4 l
Vapor Pressure of the Elements at Moderate Pressures! ?* p' e9 {% U' r- i
Vapor Pressure of the Elements at High Pressures ! K) s0 l& A4 [
Vapor Pressure of Elements and Inorganic Compounds; C. @1 [$ w/ H/ }$ l0 z. Z
9 Q2 M& N( n$ I- D6 V9 G: u* l& [% W O[ 本帖最后由 himher 于 2008-8-11 21:29 编辑 ] |
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