## Treatise on materials science and technology, Volume 4 |

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Page 117

The equilibrium separation distance, d0, between partial dislocations is given by

d0 oc GbMy (3) where G is the shear modulus in the

Burgers vectors of the two partials, and y is the stacking fault energy. Stacking

fault ...

The equilibrium separation distance, d0, between partial dislocations is given by

d0 oc GbMy (3) where G is the shear modulus in the

**slip plane**, and b2 areBurgers vectors of the two partials, and y is the stacking fault energy. Stacking

fault ...

Page 131

"Overshooting" is a term describing the phenomenon of a single crystal

continuing to deform on its primary

even when the tensile axis has rotated or " overshot" the [001 ]— [Tl 1 ] symmetry

...

"Overshooting" is a term describing the phenomenon of a single crystal

continuing to deform on its primary

**slip system**toward the [O1l] primary directioneven when the tensile axis has rotated or " overshot" the [001 ]— [Tl 1 ] symmetry

...

Page 151

This conclusion is consistent with the concept of deformation in an ordered lattice

illustrated in Fig. 27.

to reduce the number of unlike neighbors to the random number, while further ...

This conclusion is consistent with the concept of deformation in an ordered lattice

illustrated in Fig. 27.

**Slip**of one Burgers vector along an ordered**plane**is shownto reduce the number of unlike neighbors to the random number, while further ...

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### Contents

Microstructural Characterization of Thin Films | 2 |

Fundamental Concepts of Diffraction | 4 |

Epitaxial Monocrystalline Films | 10 |

Copyright | |

26 other sections not shown

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### Common terms and phrases

a-sublattice Acta alloys aluminum average beam calculated compaction component compositional dependences compression concentration configurational entropy copper correlation factor crystallites CsCl phases decreases deformation diffraction pattern diffusion coefficient dislocation density disorder parameter effect electron diffraction equations Evans and Flanagan f.c. tetragonal face-centered cubic fiber axis flux forged free energy function Gibbs free energy given increases intermetallic iron powder isostatic jump rate lattice disorder material matrix mechanism nearest neighbor observed obtained occurs oriented partial enthalpy partial entropy Phys plane Poisson ratio polycrystalline probability pure metals random reciprocal lattice relps RHEED shear stress shown in Fig single crystals sintered sintered powder solid solution strengthening solute atoms solute content specimen stacking fault energy stoichiometry stress-strain curve structure sublattice Substituting surface Suzuki TED pattern temperature dependence tetragonal theoretical thermal thermodynamic thermodynamic activities thermodynamic properties thin films tracer jump twin vacancy jumps values variations Vook X-ray yield stress