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Elements of structures and defects o...
~
Fang, Tsang-Tse, (1955-)
Elements of structures and defects of crystalline materials /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Elements of structures and defects of crystalline materials // Tsang-Tse Fang.
Author:
Fang, Tsang-Tse,
Published:
Amsterdam, The Netherlands ;Elsevier, : c2018.,
Description:
xiii, 217 p. :ill. (some col.) ; : 23 cm.;
Subject:
Crystals - Structure. -
ISBN:
9780128142684 (pbk.) :
Elements of structures and defects of crystalline materials /
Fang, Tsang-Tse,1955-
Elements of structures and defects of crystalline materials /
Tsang-Tse Fang. - Amsterdam, The Netherlands ;Elsevier,c2018. - xiii, 217 p. :ill. (some col.) ;23 cm.
Includes bibliographical references (p. 207-209) and index.
Machine generated contents note:Structures of the Crystalline Materials --pt. I
ISBN: 9780128142684 (pbk.) :NT5498
LCCN: 2017964759
Nat. Bib. No.: GBB7O1025bnbSubjects--Topical Terms:
870709
Crystals
--Structure.
LC Class. No.: QD921 / .F26 2018
Dewey Class. No.: 548/.3
Elements of structures and defects of crystalline materials /
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Fang, Tsang-Tse,
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Elements of structures and defects of crystalline materials /
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Tsang-Tse Fang.
260
#
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Amsterdam, The Netherlands ;
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Cambridge, MA, United States :
$b
Elsevier,
$c
c2018.
300
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xiii, 217 p. :
$b
ill. (some col.) ;
$c
23 cm.
504
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Includes bibliographical references (p. 207-209) and index.
505
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Machine generated contents note:
$g
pt. I
$t
Structures of the Crystalline Materials --
$g
1.
$t
The Electron Configuration of Atoms --
$g
1.1.
$t
Atoms With a Single Electron --
$g
1.2.
$t
Atoms With More Than One Electron --
$g
1.2.1.
$t
Penetration and Shielding --
$g
1.2.2.
$t
Energetic d-Orbital Collapse of Free Neutral Atoms at the Beginning of the Transition Rows --
$g
2.
$t
Bonding Within Crystal Structures --
$g
2.1.
$t
Bonding in Ionic Crystals --
$g
2.1.1.
$t
Energy for Forming the Ions From Neutral Atoms --
$g
2.1.2.
$t
Thermodynamic Viewpoint of Bond Energy --
$g
2.2.
$t
Covalent Bonds --
$g
2.2.1.
$t
Formation Energy and Mechanism of Covalent Bonding --
$g
2.3.
$t
Metallic Bonds --
$g
2.3.1.
$t
Cohesive Energy of Metals --
$g
2.4.
$t
Effect of Bonding on the Material Properties by Means of the Potential-Well Concept --
$g
2.4.1.
$t
Elastic Modulus --
$g
2.4.2.
$t
Melting Temperatures --
$g
2.4.3.
$t
Thermal Property --
$g
3.
$t
The Structures of Crystalline Crystals --
$g
3.1.
$t
Arrangements of Atoms and Ions in Crystalline Solids: Space Lattice --
$g
3.2.
$t
Metallic Structures --
$g
3.3.
$t
Ionic Structures --
$g
3.3.1.
$t
Pauling's Rules --
$g
3.4.
$t
Structural Distortion in Ionic Structures --
$g
3.4.1.
$t
Effects of Crystal Field on the Structures of the Oxides --
$g
3.4.2.
$t
Crystal Field Stabilization Energy --
$g
3.4.3.
$t
Effects of the d Electron Configuration on the Radii of Transition Metal Ions --
$g
3.4.4.
$t
Jahn -- Teller Distortions --
$g
3.4.5.
$t
Structure Distortions Arising From Asymmetric Electron Density or Inert Pair Effect --
$g
3.5.
$t
Structure of Material Technological Interest --
$g
3.5.1.
$t
Structure and the Related Feature of ZnO --
$g
3.5.2.
$t
Structure and the Related Feature of SiC --
$g
3.5.3.
$t
Structure and the Related Feature of TiO2 --
$g
3.5.4.
$t
Structure and the Related Feature of ZrO2 --
$g
3.5.5.
$t
Structure and the Related Feature of Spinel (AB2O4) --
$g
3.5.6.
$t
Structure and the Related Feature of Perovskite ABO3 --
$g
pt. II
$t
Defects of Crystalline Materials --
$g
4.
$t
Point Defects in Crystalline Materials --
$g
4.1.
$t
Point Defects in Metals --
$g
4.1.1.
$t
Solid Solutions --
$g
4.1.2.
$t
Factors Affecting the Solubility of Impurity Atoms in a Substitutional Solid Solution --
$g
4.1.3.
$t
Factors Affecting the Solubility of the Impurity Atoms in an Interstitial Solid Solution --
$g
4.1.4.
$t
Equilibrium Concentration of Point Defects --
$g
4.2.
$t
Point Defects in Ionic Solids --
$g
4.2.1.
$t
Notation for the Description of Point Defects in Binary Metal Oxides --
$g
4.2.2.
$t
Defect Structures in Stoichiometric Ionic Crystals --
$g
4.2.3.
$t
Defect Structures in Nonstoichiometric Ionic Crystals --
$g
4.2.4.
$t
Defect Reactions --
$g
4.2.5.
$t
Formulation of Defect Equations --
$g
4.2.6.
$t
Defect Equilibrium in Ionic Solids --
$g
4.2.7.
$t
Defect Association --
$g
5.
$t
Line Defects in Crystalline Solids --
$g
5.1.
$t
The Discrepancy Between the Theoretical and Observed Yield Stresses of Crystals --
$g
5.2.
$t
Observations of Dislocations --
$g
5.3.
$t
Crystallographic Slip --
$g
5.4.
$t
Elementary Geometric Characteristics of Dislocations --
$g
5.4.1.
$t
The Edge Dislocation --
$g
5.4.2.
$t
The Screw Dislocation --
$g
5.4.3.
$t
The Mixed Dislocation --
$g
5.5.
$t
Critical Resolved Shear Stress --
$g
5.6.
$t
Plastic Flow Associated With the Slip of the Dislocation Motion --
$g
5.7.
$t
Stress Fields of Dislocations --
$g
5.7.1.
$t
Constitutive Equations With Lame Constants --
$g
5.7.2.
$t
Stress Field of a Screw Dislocation --
$g
5.7.3.
$t
Stress Fields of an Edge Dislocation --
$g
5.8.
$t
Energy of a Dislocation --
$g
5.8.1.
$t
Strain Energy of a Screw Dislocation --
$g
5.8.2.
$t
Strain Energy of an Edge Dislocation --
$g
5.9.
$t
Line Tension of a Dislocation --
$g
5.10.
$t
Forces Upon Dislocations --
$g
5.11.
$t
The Bowing of a Dislocation --
$g
5.12.
$t
Force Between Dislocations --
$g
5.13.
$t
Peach-Koehler Equation --
$g
5.14.
$t
Reactions Between Dislocations --
$g
5.14.1.
$t
Dislocation Nodes --
$g
5.14.2.
$t
Kinks and Jogs --
$g
5.14.3.
$t
Intersections of Dislocations --
$g
5.15.
$t
Extended Dislocations --
$g
5.15.1.
$t
Partial Dislocations --
$g
5.15.2.
$t
Faults in the Stacking in FCC Crystals --
$g
5.15.3.
$t
Equilibrium Separation Between Partial Dislocations --
$g
6.
$t
Two-Dimensional (Interfaces) and Three-Dimensional (Second Phases) Imperfections in Solids --
$g
6.1.
$t
Grain Boundaries --
$g
6.1.1.
$t
Tilt Boundary --
$g
6.1.2.
$t
Twist Boundary --
$g
6.1.3.
$t
Coincidence Site Lattice --
$g
6.2.
$t
Interphase Boundaries in Solids --
$g
6.2.1.
$t
Coherent Boundary --
$g
6.2.2.
$t
Incoherent Boundary --
$g
6.2.3.
$t
Partially Coherent or Semicoherent Boundary --
$g
6.3.
$t
Surface Tension, Surface Stress, and Surface Free Energy of Interfaces --
$g
6.4.
$t
Free Surface --
$g
6.4.1.
$t
Calculate the Surface Free Energy of a Pure Solid FCC Metal --
$g
6.5.
$t
Interfaces of Phases --
$g
6.5.1.
$t
Wetting --
$g
6.5.2.
$t
Equilibrium Shapes of Grains --
$g
6.5.3.
$t
Morphological Changes of Second Phases --
$g
6.6.
$t
Effect of Interface Curvature on the Equilibrium Pressure Between Two Phases --
$g
6.7.
$t
Effect of the Interface Curvature on the Equilibrium Solubility Between Two Phases --
$g
6.8.
$t
Equilibrium Vacancy Concentration Changes at Curved Surfaces: Driving Force for Sintering.
505
0 #
$a
Pt. 1. Structure of the crystalline materials -- The electron configuration of atoms -- Bonding within crystal structures -- The structures of crystalline crystals -- Part II. Defects of Crystalline Materials -- Point defects in crystalline materials -- Line defects in crystalline solids -- Two-dimensional (interfaces) and three-dimensional (second phases) imperfections in solids.
650
# 0
$a
Crystals
$x
Structure.
$3
870709
650
# 0
$a
Crystals
$x
Defects.
$3
580296
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