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100423s1973 enka ob 001 0 eng d |
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|a OCLCE
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|a GB7407322
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|a 654516492
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|a 9781483159669
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|a 1483159663
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|z 0080172377
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|z 9780080172378
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|z 008017745X
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|z 9780080177458
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|a (OCoLC)609122133
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|z (OCoLC)896795332
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|z (OCoLC)974619472
|z (OCoLC)974665747
|z (OCoLC)1100972552
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|a dlr
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|a TA407
|b .R413 1973
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|a TEC
|x 009000
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|2 18
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|a UQ 8050
|2 rvk
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1 |
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|a Reid, C. N.
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|a Deformation geometry for materials scientists /
|c by C.N. Reid.
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250 |
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|a [1st ed.].
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260 |
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|a Oxford ;
|a New York :
|b Pergamon Press,
|c [1973]
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300 |
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|a 1 online resource (viii, 211 pages) :
|b illustrations
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336 |
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
|b cr
|2 rdacarrier
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1 |
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|a International series on materials science and technology ;
|v v. 11
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504 |
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|a Includes bibliographical references.
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506 |
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|3 Use copy
|f Restrictions unspecified
|2 star
|5 MiAaHDL
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533 |
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|a Electronic reproduction.
|b [Place of publication not identified] :
|c HathiTrust Digital Library,
|d 2010.
|5 MiAaHDL
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|a Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002.
|u http://purl.oclc.org/DLF/benchrepro0212
|5 MiAaHDL
|
583 |
1 |
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|a digitized
|c 2010
|h HathiTrust Digital Library
|l committed to preserve
|2 pda
|5 MiAaHDL
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|a Print version record.
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|a Front Cover; Deformation Geometry for Materials Scientists; Copyright Page; Table of Contents; PREFACE; CHAPTER 1. THE CONCEPTS OF STRESS AND STRAIN; STRESS; INHOMOGENEOUS STRESS; THE STRESS TENSOR; PRINCIPAL AXES; FAMILIAR TYPES OF STRESS STATE; THE GRAPHICAL REPRESENTATION OF STRESS BY THE MOHR CIRCLE; TRUE STRESS AND ENGINEERING STRESS; STRAIN; STRAIN IN TWO DIMENSIONS; STRAIN IN THREE DIMENSIONS; THE STRAIN ELLIPSOID; CHAPTER 2. THE TENSILE TEST; TYPES OF TENSILE TEST; TYPES OF MECHANICAL RESPONSE TO STRESS; FEATURES OF THE TENSILE TEST; THE TENSILE INSTABILITY.
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|a The l�uders band-a self-arresting tensile instabilitysuperplasticity; the elastic behaviour of the tensile machine; the load relaxation test; the approach to a steady-state load-extension curve; chapter 3. linear elastic deformation; hooke's law in three dimensions; the energy stored in an elastically strained body; the effect of material symmetry on the elastic constants; young's modulus in anisotropic materials; the bulk modulus of anisotropic materials; the shear modulus in anisotropic materials; specifying elastic anisotropy in materials of cubic and hexagonal symmetry.
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|a Chapter 4. plastic deformation of isotropic materialsthe state of stress; the criterion for yielding under a general state of stress; the notion of an effective stress; stress-strain relations; tensile instability under biaxial stresses; chapter 5. the geometry of single and duplex slip; what is slip?; the initiation of slip; the reorientation of directions by single slip; the reorientation of planes by single slip; single slip in response to a compressive force; single slip in crystals of cubic symmetry; slip on two systems-duplex slip; examples of duplex slip in cubic crystals.
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|a Chapter 6. slip on more than two systems-multiple slipstrains produced by slip; independent slip systems and the effect of cross-slip; the selection of active systems; the state of stress for multiple slip; the principle of maximum work; deformation of a polycrystalline aggregate; rigid body rotation during slip; chapter 7. plastic deformation of crystals by twinning; the definition of a twinned crystal; the origin of twins; the geometry of mechanical twinning; experimental identification of twinning elements; twinning on the atomic scale; the sense of the twinning shear.
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|a Transformation of crystallographic directions by twinningchanges in length caused by twinning; appendix: transformation of vectors and tensors; bibliography; index.
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|a Deformation Geometry for Materials Scientists presents the study of macroscopic geometry of deformation, particularly on crystalline solids. The book discusses a wide range of topics on the deformation of crystalline materials. The text discusses concepts on stress and strain on materials and tensile tests. Linear elastic and plastic deformations; and the macroscopic geometry mechanism of slip and deformation twinning are covered as well. Materials scientists, engineers, and students of materials science will find this book a great reference material.
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|a Materials.
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|a Deformations (Mechanics)
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650 |
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6 |
|a Mat�eriaux.
|0 (CaQQLa)201-0025866
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650 |
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6 |
|a D�eformations (M�ecanique)
|0 (CaQQLa)201-0011025
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|a deformation.
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|a TECHNOLOGY & ENGINEERING
|x Engineering (General)
|2 bisacsh
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|a TECHNOLOGY & ENGINEERING
|x Reference.
|2 bisacsh
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|a Mat�eriaux.
|2 eclas
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|a M�ecanique.
|2 eclas
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650 |
|
7 |
|a D�eg�ats.
|2 eclas
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650 |
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7 |
|a Deformations (Mechanics)
|2 fast
|0 (OCoLC)fst00889780
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650 |
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|a Materials
|2 fast
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650 |
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|a Deformation
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|a Werkstoff
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|a Deformationsmessung
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|a Werkstoffkunde
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|a Mat�eriaux.
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|a D�eformations (m�ecanique)
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|i Print version:
|a Reid, C.N.
|t Deformation geometry for materials scientists.
|b [1st ed.].
|d Oxford, New York, Pergamon Press [1973]
|w (DLC) 73004716
|w (OCoLC)601214
|
830 |
|
0 |
|a International series on materials science and technology ;
|v v. 11.
|
856 |
4 |
0 |
|u https://sciencedirect.uam.elogim.com/science/book/9780080172378
|z Texto completo
|