Grain Orientation Mapping

Grain orientation mapping is a materials characterization method that measures the crystallographic orientation of individual grains across a polycrystalline sample, revealing how microstructure influences engineering performance. In electron backscatter diffraction, an electron beam scans a polished surface, and the resulting diffraction patterns are indexed to determine each grain’s orientation, boundaries, and phase identity. The data can be visualized as orientation maps and used to assess texture, recrystallization, grain growth, and deformation. By linking crystallographic structure with mechanical behavior, grain orientation mapping supports alloy development, failure analysis, manufacturing optimization, and studies of processes such as welding and additive manufacturing.

Grain Orientation Mapping - Related Videos

Research

JoVE Journal - Engineering

Atom Probe Tomography Studies on the Cu(In,Ga)Se2 Grain Boundaries

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Cited by 29 •

2013

In this work, we describe the use of the atom-probe tomography technique for studying the grain boundaries of the absorber layer in a CIGS solar cell. A novel approach to prepare the atom probe tips containing the desired grain boundary with a known structure is also presented here.

Research

JoVE Journal - Engineering
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Characterization of Ultra-fine Grained and Nanocrystalline Materials Using Transmission Kikuchi Diffraction

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Cited by 8 •

2017

This paper provides a detailed method to characterize the microstructure of ultra-fine grained and nanocrystalline materials using a scanning electron microscope equipped with a standard electron backscatter diffraction system. Metal alloys and minerals presenting refined microstructures are analyzed using this technique, showing the diversity of its possible applications.

Education

JoVE Science Education - Engineering

Nanocrystalline Alloys and Nano-grain Size Stability

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2023

Source: Sina Shahbazmohamadi and Peiman Shahbeigi-Roodposhti-Roodposhti, School of Engineering, University of Connecticut, Storrs, CT Alloys with grain size less than 100 nm are known as nanocrystaline alloys. Due to their enhanced physical and mechanical properties, there is an ever-increasing demand to employ them in various industries such as semiconductor, biosensors and aerospace. To improve the processing and application of nanocrystalline alloys, it is necessary to develop close to 100%...

Determining Spatial Orientation of Rock Layers with the Brunton Compass

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2023

Source: Laboratory of Alan Lester - University of Colorado Boulder Most rock units exhibit some form of planar surfaces or linear features. Examples include bedding-, fault-, fracture-, and joint-surfaces, and various forms of foliation and mineral alignment. The spatial orientation of these features form the critical raw data used to constrain models addressing the origin and subsequent deformation of rock units. Although now over 100 years since its invention and introduction, the Brunton...

Patient-specific Modeling of the Heart: Estimation of Ventricular Fiber Orientations

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Cited by 14 •

2013

A methodology to estimate ventricular fiber orientations from in vivo images of patient heart geometries for personalized modeling is described. Validation of the methodology performed using normal and failing canine hearts demonstrate that that there are no significant differences between estimated and acquired fiber orientations at a clinically observable level.

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