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Mechanical Properties of Materials

Mechanical Properties of Materials
Kataloginformation
Feldname Details
Vorliegende Sprache eng
Hinweise auf parallele Ausgaben 368272478 Buchausg. u.d.T.: ‡Pelleg, Joshua: Mechanical properties of materials
ISBN 978-94-007-4341-0
Name Pelleg, Joshua
T I T E L Mechanical Properties of Materials
Verlagsort Dordrecht
Verlag Springer Netherlands
Erscheinungsjahr 2013
2013
Umfang Online-Ressource (XIV, 634 p. 486 illus., 139 illus. in color, digital)
Reihe Solid Mechanics and Its Applications ; 190
Notiz / Fußnoten Description based upon print version of record
Weiterer Inhalt Mechanical Properties of Materials; Preface; Contents; Chapter 1: Mechanical Testing of Materials; 1.1 Introduction; 1.2 The Tension Test; 1.2.1 Elastic Deformation and the Relations Between Stress and Strain; 1.2.2 The Elastic and Proportional Limits; 1.2.3 Plastic Deformation; 1.2.4 The True Stress/Strain Relation; 1.2.5 Elongation; 1.2.6 The Reduction of Area; 1.2.7 Necking; 1.2.8 Instability in Tension; 1.2.9 The Shear Stress and Shear Strain; 1.2.10 The Elastic Strain Energy; 1.2.11 Resilience; 1.2.12 Toughness; 1.2.13 Fracture Stress; 1.3 Compression Stress; 1.3.1 Introduction. 1.3.2 The Compression of Brittle Materials1.3.3 The Compression of Ductile Materials; 1.3.4 The Effect of Hydrostatic Pressure on Compression; 1.4 The Hardness Test; 1.4.1 Indentation by Spherical (Ball) Indenters; 1.4.1.1 The Brinell Hardness Test; 1.4.1.2 The Meyer Hardness Test; 1.4.1.3 Comments on the Ball Indentations; 1.4.2 Indentation by Pyramid and Cone Indenters; 1.4.2.1 The Vickers Hardness Test; 1.4.2.2 The Knoop Hardness Test - Microhardness; 1.4.3 Indentation by Cone (or Spherical) Indenters; 1.4.3.1 The Rockwell Hardness Test; 1.4.4 Comments on Hardness Tests. 1.5 The Torsion Test (Shear)1.5.1 Torsion in the Elastic Region; 1.5.2 Torsion in the Plastic Region; 1.5.3 Axial Change in Torsion; 1.5.4 Fracture by Torsion Test; 1.6 The Impact Tests; 1.7 Anelasticity; 1.7.1 Introduction; 1.7.2 The Elastic After Effect; 1.7.3 The Thermoelastic Effect; 1.7.4 Energy Losses/Hysteresis Loop; 1.7.5 Internal Friction; Appendix I; Appendix II; References; Chapter 2: Introduction to Dislocations; 2.1 Introduction; 2.2 The Theoretical Strength of Crystals; 2.3 Seeing (Dislocations) Is Believing; 2.3.1 Etch Pits; 2.3.2 Transmission Electron Microscopy (TEM). 2.3.3 Field Ion Microscopy (FIM)2.4 The Geometrical Characterization of Dislocations; 2.5 The Formation of Dislocations; 2.6 The Motion of Dislocations; 2.6.1 Conservative Motion; 2.6.2 Non-conservative Motion (Climb); 2.7 The Energy of Dislocations; 2.7.1 Screw Dislocation; 2.7.2 Edge Dislocation; 2.8 Line Tension; 2.9 The Stress Field of a Dislocation; 2.9.1 Screw Dislocations; 2.9.2 Edge Dislocations; 2.10 The Forces Acting on Dislocations; 2.10.1 The Glide Forces; 2.10.2 Climb; 2.11 The Forces Between Dislocations; 2.11.1 Screw Dislocations; 2.11.2 Edge Dislocations. 2.12 The Intersection of Dislocations2.13 Dislocation Multiplication; 2.14 Partial Dislocations; 2.14.1 Shockley Partial Dislocations; 2.14.2 Frank Partial Dislocations; 2.14.3 The Cross Slip of Partial Dislocations; 2.14.4 The Thompson Tetrahedron; 2.14.5 Lomer-Cottrell Locks; 2.15 Dislocation Pile-Ups; 2.16 Low (Small)-Angle Grain Boundaries; References; Chapter 3: Plastic Deformation; 3.1 Introduction; 3.2 Critical Resolved Shear Stress (CRSS); 3.3 Slip; 3.3.1 FCC Structures; 3.3.2 BCC Structures; 3.3.3 HCP Structures; 3.4 The Slip in Polycrystalline Materials; 3.5 Twinning. 3.6 Yield Phenomena
Titelhinweis Buchausg. u.d.T.: ‡Pelleg, Joshua: Mechanical properties of materials
ISBN ISBN 978-94-007-4342-7
Klassifikation TG
TEC009070
TEC021000
620.1
620.1/1292
TA405-409.3
QA808.2
ZM 3200
UQ 8025
Kurzbeschreibung The subject of mechanical behavior has been in the front line of basic studies in engineering curricula for many years. This textbook was written for engineering students with the aim of presenting, in a relatively simple manner, the basic concepts of mechanical behavior in solid materials. A second aim of the book is to guide students in their laboratory experiments by helping them to understand their observations in parallel with the lectures of their various courses; therefore the first chapter of the book is devoted to mechanical testing. Another aim of the book is to provide practicing engineers with basic help to bridge the gap of time that has passed from their graduation up to their actual involvement in engineering work. The book also serves as the basis for more advanced studies and seminars when pursuing courses on a graduate level. The content of this textbook and the topics discussed correspond to courses that are usually taught in universities and colleges all over the world, but with a different and more modern approach. It is however unique by the inclusion of an extensive chapter on mechanical behavior in the micron and submicron/nanometer range. Mechanical deformation phenomena are explained and often related to the presence of dislocations in structures. Many practical illustrations are provided representing various observations encountered in actual structures of particularly technical significance. A comprehensive list of references at the end of each chapter is included to provide a broad basis for further studying the subject.
SWB-Titel-Idn 373360932
Signatur Springer E-Book
Bemerkungen Elektronischer Volltext - Campuslizenz
Elektronische Adresse $uhttp://dx.doi.org/10.1007/978-94-007-4342-7
Internetseite / Link Volltext
Siehe auch Volltext
Siehe auch Cover
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