Theory of Magnetic Anisotropy in Nanostructured Alloy Cu70 Fe30

Authors

  • Warda LASLOUNI
  • Mohammed AZZAZ

Keywords:

Anisotropy theory

Abstract

The intermetallic based on transition metal compounds present interesting magnetic properties for the technological applications (permanent magnets, magnetic recording,. . .).  



 Cu70Fe30 nanostructured with crystallite size vary from 10 a 12 nanometers ha been developed  by a   mechanical milling method. The iron and copper distribution was clear. The distribution showed a homogeneous distribution of iron and copper in a Cu-Fe obtained after 36 h milling.The structural properties have been performed with X-ray diffraction. With in- creasing milling times, Fe  diffuse into the Cu matrix, which accelerates the formation of the magnetic nanostructure Cu- Fe  alloys. The magnetic behavior is investigated using Vibrating Sample Magnetometer (VSM). The binary alloys nanocrystals possess ferromagnetic character at room temperature.

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Published

2016-12-30

How to Cite

LASLOUNI , W., & AZZAZ , M. (2016). Theory of Magnetic Anisotropy in Nanostructured Alloy Cu70 Fe30. International Journal of Computational and Experimental Science and Engineering, 2(2), 24–27. Retrieved from https://ijcesen.com/index.php/ijcesen/article/view/28

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Section

Research Article