Metallurgy - Materials Characterization

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Metallurgy - Materials Characterization

Characterization, when used in materials science, refers to the broad and general process by which a material's structure and properties are probed and measured. It is a fundamental process in the field of materials science, without which no scientific understanding of engineering materials could be ascertained.

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workload

32h

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7 days

created on

07/12/2017

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Syllabus:

Aula #1 - properties of light, Image formation
Aula #2 - Magnification and resolution
Aula #3 - Depth of field,focus and field of view
Aula #4 - Lens defects,filters and light microscopy introduction
Aula #5 - Mod-01 Lec-05 Optical microscope demo., Bright field imaging, opaque specimen illumination
Aula #6 - Opaque stop microscopy, Phase contrast microscopy
Aula #7 - Dark field microscopy, Polarization microscopy
Aula #8 - Differential interference contrast and fluorescence microscopy
Aula #9 - Sample preparation techniques for optical microscopy
Aula #10 - Tutorial problems
Aula #11 - continuation-Tutorial problems
Aula #12 - Introduction to scanning electron Microscopy
Aula #13 - Lens aberrations, Object resolution, Image quality
Aula #14 - Interaction between electrons and sample, Imaging capabilities
Aula #15 - SEM and its mode of operation, Effect of aperture size,Working distance,condenser lens strength
Aula #16 - SEM and its mode of operation- continuation
Aula #17 - Factors affecting Interaction volume, Demonstration of SEM
Aula #18 - Image formation and interpretation
Aula #19 - Image formation and interpretation continued, EDS, WDS
Aula #20 - Special contrast mechanisms, Monte Carlo simulations of Interaction volume
Aula #21 - Electron channeling contrast imaging (ECCI), (EBSD)-Theory & instrument demonstration
Aula #22 - Tutorial Problems on SEM
Aula #23 - Basics of X-ray emission from source, electron excitation and X-ray interaction
Aula #24 - Properties of X-rays
Aula #25 - Bragg's Law Derivation
Aula #26 - Diffraction relationship with reciprocal space
Aula #27 - X-ray scattering
Aula #28 - Factors affecting intensities of X-ray peaks
Aula #29 - Factors affecting intensities of X-ray peaks- continuation
Aula #30 - Effect of crystallite size and strain on intensity of X-rays
Aula #31 - Profile fit, Factors affecting peak brodening
Aula #32 - Mod-04 Lec-31 Indexing of diffraction pattern, Quantitative analysis
Aula #33 - Indexing, Quantitative analysis-continuation, Residual stress measurements
Aula #34 - XRD and Residual stress measurement- lab demonstration
Aula #35 - Introduction to Transmission Electron Microscopy (TEM)
Aula #36 - Fundementals of Transmission Electron Microscopy (TEM)
Aula #37 - Basics of Diffraction-1
Aula #38 - Basics of Diffraction-2
Aula #39 - TEM imaging-1
Aula #40 - TEM imaging-2
Aula #41 - TEM instrument demonstration
Aula #42 - TEM sample preparation-1TEM sample preparation-1
Aula #43 - TEM sample preparation-2
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Module 1: Metallurgy - Materials Characterization

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