homogeneous deformations crystallography h. k. d. h. bhadeshia

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Homogeneous deformations Crystallogra phy H. K. D. H. Bhadeshia

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Page 1: Homogeneous deformations Crystallography H. K. D. H. Bhadeshia

Homogeneous deformations

Crystallography

H. K. D. H. Bhadeshia

Page 2: Homogeneous deformations Crystallography H. K. D. H. Bhadeshia

body-centred tetragonal cell of austenite

austenite

body-centred cubic ferrite

Page 3: Homogeneous deformations Crystallography H. K. D. H. Bhadeshia
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contraction

expansion

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pure strain

matrix symmetrical

referred to principal axes

principal axes are unrotated

volume change = determinant of (A S A) =

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u

v

A

u

v

B

Similarity transformation

Page 10: Homogeneous deformations Crystallography H. K. D. H. Bhadeshia

homogeneous deformation leaves points originally in a line, colinear, and lines originally in a plane, coplanar

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similarity transformation

Page 12: Homogeneous deformations Crystallography H. K. D. H. Bhadeshia

s

1

s

1

1

uniaxial dilatation

simple shear

general invariant-plane

strain

s=0.26

=0.03

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Assignment

• Find and expression for the magnitude of a vector u in terms of the lattice parameters and angle β in a monoclinic lattice

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stretch and rotation

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three simultaneous equations solved three times by substituting each eigenvalue in turn

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stretch and rotation

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Refinement of austenite grain size

•repeated recrystallisation

•pancaking

Refinement of ferrite grain size

•nucleation and growth

Page 26: Homogeneous deformations Crystallography H. K. D. H. Bhadeshia

Smallest size possible in steel ?

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Yokota & Bhadeshia, 2004

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Pancaking

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Singh & Bhadeshia, 1998

courtesy Rongshan Qin, GIFT, POSTECH

Page 32: Homogeneous deformations Crystallography H. K. D. H. Bhadeshia

u

v

v = Su

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Cross Rolling

x

x

y

y

first pass

second passrotate 90°

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courtesy of Rongshan Qin

Page 42: Homogeneous deformations Crystallography H. K. D. H. Bhadeshia

Chae, Qin, ISIJ International 49 (2009) 115

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