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Surface Effects in Crystal Plasticity
Space Charge Layers
other
Author(s):
Harry C. Gatos
,
Jacek Lagowski
Publication date
(Print):
1977
Publisher:
Springer Netherlands
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The electrical double layer and the theory of electrocapillarity.
D GRAHAME
(1947)
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LI.A contribution to the theory of electrocapillarity
David Chapman
(1913)
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LXXXVII. Theory of dislocations in germanium
W.T. Read
(2009)
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Author and book information
Book Chapter
Publication date (Print):
1977
Pages
: 221-265
DOI:
10.1007/978-94-011-9691-8_5
SO-VID:
08f483ba-6d37-463c-a409-cca72e75c40b
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Book chapters
pp. 3
Surface Effects in Crystal Plasticity: General Overview
pp. 49
Surface Effects in Crystal Plasticity — Overview from the Crystal Plasticity Standpoint
pp. 127
Surface Effects in Crystal Plasticity: Overview from a Surface Science Point of View
pp. 165
Atomic Geometry and Electronic Structure of Solid Surfaces
pp. 221
Space Charge Layers
pp. 267
Surface Chemistry I: Multi-Component Systems
pp. 301
Surface Chemistry II: Overlayers (New Phases)
pp. 321
Microplasticity
pp. 383
Inelastic Deformation and Fracture of Crystalline Solids
pp. 433
Surface Effects in Uniaxial Plastic Deformation
pp. 469
The Role of Surface-Environment Interactions on Cyclic Deformation
pp. 479
A Surface Effect Specific to Cyclically Deformed B.C.C. Metals — the Surface Roughening of Poly-Crystalline α-Iron During Cyclic Deformation
pp. 487
Dislocation Mobility in the Surface Layer
pp. 495
Role of Free Surface in Yielding and Easy Glide Deformations of Highly Perfect Copper Crystals
pp. 505
Microcinematographic Studies of the Development of Slip Bands
pp. 511
The Plastic Flow Stress in the Core and Surface Regions of Deformed Crystals
pp. 527
An Analysis of the Unloading Yield Point with Reference to the Pre-Macro-Yield Region
pp. 533
New Studies of Surface Effects in Deformed Copper Single Crystals
pp. 543
Influence of Surface Plasticity on the Deformation Behavior and Fracture Mode of Silicon
pp. 551
On the Residual Stresses in Plastically Deformed Polycrystals and Composites
pp. 565
The Influence of Surface Films on Mechanical Properties
pp. 593
Surface Damage Resulting from Film Cracking
pp. 599
Effect of Anodic Oxide Films on Low Temperature Mechanical Behavior of Niobium Single Crystals
pp. 609
The Effect of Near-Surface Diffusion Layers On Fatigue Of Copper
pp. 629
Chemisorption-Induced Variations in the Plasticity and Fracture of Non-Metals
pp. 663
Surface Effects on the Yield Point of Sapphire
pp. 671
Microdeformation of Hard Non-Metallic Crystals by Softer Indenters and Sliders
pp. 681
The Chemomechanical Effect in Semiconductors
pp. 701
Environmentally Induced Lowering of Surface Energy and the Mechanical Behavior of Solids
pp. 737
Chemical-Induced Variations in the Plasticity and Fracture of Metals and Minerals-Chemomechanical Effect
pp. 749
Surface Effects in Dissolution-Related Embrittlement Phenomena
pp. 773
Mechanical Behavior of Oxide Free Stainless Steel Surfaces in a Low Pressure Hydrogen Environment
pp. 781
A Unifying Model of Intergranular Corrosion, Intergranular Penetration of Liquid Metals, Stress Corrosion Cracking, and Liquid Metal Embrittlement of Substitutional Solid Solutions
pp. 793
Cleavage vs Shear at Crack Tips in Metal Crystals
pp. 801
Nondestructive, Near-Surface Plasticity Determination by Electron Channeling
pp. 811
Correlation between Pitting and Stress Corrosion Cracking Of Stainless Steels in Chloride Solutions
pp. 819
What I Know and Would Like to Know Concerning Environmental Effects on the mechanical Properties of Metals
pp. 835
Application of Chemomechanical Effects to Fracture-Dependent Industrial Processes
pp. 863
Environmentally-Assisted Hard Materials Machining
pp. 889
Erosion of Metals and Alloys
pp. 911
Enhancement of Fatigue, Creep, and Stress-Corrosion Resistance by Surface Treatments
pp. 925
Microcutting: A Method to Study Surface Plasticity at Very High Strain Rates
pp. 933
Surface Effects in Crystal Plasticity: Concluding Summary Lecture
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