The Investigation of Mixed Ferrofluids Containing Iron Oxide nanoparticles and Microspheres

Author:

Ganachari Sharanabasava V.12ORCID,Patil Veerabhadragouda B.3ORCID,Banapurmath Nagaraj R.2ORCID,Soudagar Manzoore Elahi M.4ORCID,Shahapurkar Kiran5ORCID,Elfasakhany Ashraf6,Alsehli Mishal6,Yavagal Akshata2,Mogre Pradyumna2,Hiremath Vijayakumar M7,Hallad Shankar A.2

Affiliation:

1. Department of Chemistry, School of Advanced Sciences, KLE Technological University BVB Campus Vidyanagar, Hubballi-80031, Karnataka, India

2. Centre for Material Science, School of Mechanical Engineering, KLE Technological University BVB Campus Vidyanagar, Hubballi-80031, Karnataka, India

3. Institute of Energetic Materials, Faculty of Chemical Technology, University of Pardubice, Studentska 95, Pardubice 53210, Czech Republic

4. Department of Mechanical Engineering, School of Technology, Glocal University, Delhi-Yamunotri Marg, SH - 57, Mirzapur Pole, Saharanpur District, Uttar Pradesh-247121, India

5. School of Mechanical, Chemical and Materials Engineering, Adama Science and Technology University, Adama 1888, Ethiopia

6. Mechanical Engineering Department, College of Engineering, Taif University, P.O. Box 11099, Taif 21944, Saudi Arabia

7. Centre for Nanotechnology, Department of Processing and Food Engineering, CAE, UAS, Raichur 584104, Karnataka, India

Abstract

The aim of the present work is the synthesis and characterization of iron oxide (Fe3O4) nanoparticles. These nanoparticles are coated with oleic acid and polyvinyl butyral and mixed with microspheres and further developed ferrofluids with silicon oil. Studies of the performance of the nanoparticles in these ferrofluids with and without coating agents were carried out. The nanoparticles were synthesized using the chemical co-precipitation technique and coated with oleic acid and polyvinyl butyral, and it further mixed with microsphere ferrofluids and developed using silicon oil. The prepared Fe3O4 nanoparticles and their coated forms of oleic acid and polyvinyl butyral were mixed with microspheres; furthermore, ferrofluids were developed with silicon oil. All forms of these ferrofluids are characterized for morphology and phase purity (SEM, XRD, and FTIR). The iron oxide (Fe3O4) nanoparticles have shown different magnetic properties, differentiating macroscopic iron oxide in suspended particles. The ratio of surface to volume increases along with the decrease in atomic size, essential for assessing the surface morphological properties. The magneto-rheological (MR) fluids were determined, and shear stress of Expancel microsphere mixed iron oxide nanoparticle with and without them was found almost equal. However, the ferrofluid with PVB coated nanoparticles and microspheres emerged as a stable rheological ferrofluid, sustaining high shear stress and low viscosity with increasing shear rate. Also, shear rates up to 650 s−1 have been observed, showing very high shear stress withstanding capacity. The stability and performance of the magnetic colloidal ferrofluids depend on the thermal contribution and the balance between attractive/repulsive interactions.

Funder

B. V. Bhoomaraddi College of Engineering and Technology

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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