Application of mixed colloidal magnetic fluid of single domain Fe3O4 and NiFe2O4 ferrite nanoparticles in audio speaker

Abstract

Ferrofluids are stable suspensions of colloidal ferrimagnetic particles in suitable non – magnetic carrier liquids. They have attracted a lot of attention from scientists and engineers due to their many interesting properties and applications in various branches of engineering. The present work reports the performance of colloidal fluid of single domain nanoparticles of NiFe2O4 and Fe3O4. The thermal properties and its dynamics on magnetization as well as its effect on thermal conductivity on the colloidal fluid are studied here. Advantages of the increased thermal conductivity and optimization of magnetization of mixed colloidal fluid is used to extract the heat from voice coil. Nanoparticles of 21 nm of Fe3O4 and 12 nm of NiFe2O4 are used for mixed colloidal fluid. The suspension of particles is achieved by coating the nanoparticles with mono-corboxylic group on both the types of particles. The higher size (21 nm of Fe3O4 and 12 nm of NiFe2O4) particles are taken for synthesizing colloidal fluid, to have magnetic property of mixed colloidal liquid at elevated temperature of voice coil of speaker (Higher sized particles gives better magnetization). Oil is used as a carrier. Mixed magnetic colloidal fluid is used as a medium for damping so that noise is reduced at higher temperature of voice coil.

Authors and Affiliations

S. D. Kemkar, Milind Vaidya, Dipak Pinjari, Sammit Karekar, Sanjana Kemkar, Siddhesh Nanaware, Sanjukta Kemkar

Keywords

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  • EP ID EP389772
  • DOI 10.9790/9622-0701031118.
  • Views 140
  • Downloads 0

How To Cite

S. D. Kemkar, Milind Vaidya, Dipak Pinjari, Sammit Karekar, Sanjana Kemkar, Siddhesh Nanaware, Sanjukta Kemkar (2017). Application of mixed colloidal magnetic fluid of single domain Fe3O4 and NiFe2O4 ferrite nanoparticles in audio speaker. International Journal of engineering Research and Applications, 7(1), 11-18. https://europub.co.uk/articles/-A-389772