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MME 340 PHASE TRANSFORMATIONS IN MATERIALS ANANDH SUBRAMANIAM Materials Science and Engineering INDIAN INSTITUTE OF TECHNOLOGY KANPUR New Delhi- 110016.

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Presentation on theme: "MME 340 PHASE TRANSFORMATIONS IN MATERIALS ANANDH SUBRAMANIAM Materials Science and Engineering INDIAN INSTITUTE OF TECHNOLOGY KANPUR New Delhi- 110016."— Presentation transcript:

1 MME 340 PHASE TRANSFORMATIONS IN MATERIALS ANANDH SUBRAMANIAM Materials Science and Engineering INDIAN INSTITUTE OF TECHNOLOGY KANPUR New Delhi- 110016 Ph: (+91) (512) 259 7215, Fax: (+91) (512) 259 7505 anandh@iitk.ac.in http://home.iitk.ac.in/~anandh/

2 UNIVERSE PARTICLES ENERGY SPACE FIELDS STRONG WEAK ELECTROMAGNETIC GRAVITY METAL SEMI-METAL SEMI-CONDUCTOR INSULATOR nD + t HYPERBOLIC EUCLIDEAN SPHERICAL GAS BAND STRUCTURE AMORPHOUS ATOMIC NON-ATOMIC STATE / VISCOSITY SOLIDLIQUID LIQUID CRYSTALS QUASICRYSTALS CRYSTALS RATIONAL APPROXIMANTS STRUCTURE NANO-QUASICRYSTALSNANOCRYSTALS SIZE

3 AtomStructure Crystal Electro- magnetic MicrostructureComponent Thermo-mechanical Treatments PhasesDefects+ Casting Metal Forming Welding Powder Processing Machining Vacancies Dislocations Twins Stacking Faults Grain Boundaries Voids Cracks + Residual Stress Processing determines shape and microstructure of a component

4 PhasesDefectsResidual stress Transformations in Materials Defect structures can change Phases can transform Stress state can be altered Phase transformation Defect structure transformation Stress-state transformation GeometricalPhysical Microstructure Phases Microstructural Transformations Phases Transformations StructuralProperty

5 Phase Defined Using GEOMETRICAL EntitiesPHYSICAL Properties E.g. Atoms, Cluster of Atoms Ions, etc. E.g. Spin, Magnetic Moment ORDER ORIENTATIONALPOSITIONALPROBABILISTIC OCCUPATION

6 Sources of Residual Stress Geometrical Physical Phase transformations & reactions Defects Vacancies Dislocations Twins Stacking Faults Grain Boundaries Voids Cracks Thermal Magnetic Ferroelectric Volume, Shape change Structural Property Coherent/semi-coherent precipitates Epitaxial structures (coherent/semi-coherent) The product of phase transformation or reaction would have a different morphology as compared to the parent phase

7 Sources of Residual Stress Structural Thermal Physical property Phase transformations & reactions Defects Vacancies Dislocations Twins Stacking Faults Grain Boundaries Voids Cracks Thermal Magnetic Ferroelectric Geometric structure Coherent/semi-coherent precipitates Epitaxial structures (coherent/semi-coherent)

8  Transitions between two phases of identical chemical composition Phase Transition  Covers a wider spectrum of phenomena  Includes PHASE REACTIONS leading to compositional changes  E.g.:  ’ →  +  (different crystal structure & chemical composition)   →  +  Phase Transformation Note: Identical chemical composition  equilibrium point defect concentration may be different in the polymorphs (but considered to be of identical composition)

9  What is a Phase?  What kind of phases exist?  What constitutes a transformation?  How can we cause a phase transformation to occur?  The stimuli: P, T, Magnetic field, Electric field  What kind of phase transformations are there?  Why does a phase transformation occur?  Energy considerations of the system?  Thermodynamic potentials (G, A…) Some Questions?

10 NucleusAtomCrystalMicrostructureComponent Defects Length Scales Involved


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