International Journal of Science and Research (IJSR)

International Journal of Science and Research (IJSR)
Call for Papers | Fully Refereed | Open Access | Double Blind Peer Reviewed

ISSN: 2319-7064


Downloads: 106

Research Paper | Physics Science | India | Volume 3 Issue 7, July 2014


Effect of Bi2O3 and Sintering Temperature on the Ultrasonic Properties of Mn-Zn Ferrite

B. Ravinder Reddy | N. Harikumar


Abstract: The pure and mixed Mn-Zn ferrites with Bi2O3 were prepared by using the conventional ceramic technique at various sintering temperatures (t) of 800 1200 0C. The additions of Bi2O3 were used to promote grain growth and to increase magnetic permeability during sintering of Mn-Zn ferrites. The Ultrasonic velocity (vl), attenuation coefficient () and density () studies in pure Mn0.58Zn0.37Fe2.05O4 and mixed ferrite with Bi2O3 at 2 MHz frequencies using Pulse Echo Selection (PES) technique was reported. The results were discussed and analyzed in the light of micro-structural and ultrasonic properties.


Keywords: Ceramic technique, Sintering, Ultrasonic velocity, Ultrasonic attenuation, Micro-structure


Edition: Volume 3 Issue 7, July 2014,


Pages: 1820 - 1824


How to Download this Article?

You Need to Register Your Email Address Before You Can Download the Article PDF


How to Cite this Article?

B. Ravinder Reddy, N. Harikumar, "Effect of Bi2O3 and Sintering Temperature on the Ultrasonic Properties of Mn-Zn Ferrite", International Journal of Science and Research (IJSR), Volume 3 Issue 7, July 2014, pp. 1820-1824, https://www.ijsr.net/get_abstract.php?paper_id=201538

Similar Articles with Keyword 'Ceramic technique'

Downloads: 101

Research Paper, Physics Science, India, Volume 3 Issue 11, November 2014

Pages: 939 - 942

Novel Existence of canted Spins on Octahedral Sites of CdxMg1-xFe2O4 Ferrites as a Third Active Mode of Vibrations

B. R. Karche [2]

Share this Article

Downloads: 113

Research Paper, Physics Science, India, Volume 3 Issue 11, November 2014

Pages: 772 - 778

Magnetic Properties of Nanoparticle CuxCo1-xFe2-2yAl2yO4 Ferrite System

S. S. Karande | B. R. Karche [2]

Share this Article
Top