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“Large Area Stress Distribution In Crystalline Materials Calculated From Lattice Deformation Identified By Electron Backscatter Diffraction.” Metadata:

  • Title: ➤  Large Area Stress Distribution In Crystalline Materials Calculated From Lattice Deformation Identified By Electron Backscatter Diffraction.
  • Authors: ➤  
  • Language: English

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  • Internet Archive ID: pubmed-PMC4121609

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This article is from <a href="//archive.org/search.php?query=journaltitle%3A%28Scientific%20Reports%29" rel="ugc nofollow">Scientific Reports</a>, <a href="//archive.org/search.php?query=journaltitle%3A%28Scientific%20Reports%29%20AND%20volume%3A%284%29" rel="ugc nofollow">volume 4</a>.<h2>Abstract</h2>We report a method to obtain the stress of crystalline materials directly from lattice deformation by Hooke's law. The lattice deformation was calculated using the crystallographic orientations obtained from electron backscatter diffraction (EBSD) technology. The stress distribution over a large area was obtained efficiently and accurately using this method. Wurtzite structure gallium nitride (GaN) crystal was used as the example of a hexagonal crystal system. With this method, the stress distribution of a GaN crystal was obtained. Raman spectroscopy was used to verify the stress distribution. The cause of the stress distribution found in the GaN crystal was discussed from theoretical analysis and EBSD data. Other properties related to lattice deformation, such as piezoelectricity, can also be analyzed by this novel approach based on EBSD data.

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