Preparation and Experimental Investigation of CUO Nanoparticles Based Engine OILS

Authors

  • Sk Salman Basha  Mechanical Engineering, Sasi Institute of Technology & Engineering, Tadepalligudem, Andhra Pradesh, India

Keywords:

Thermal conductivity, Viscosity, Flash point, Fire point, CuO Nanoparticles, XRD, TEM, KD2 pro thermal property analyzer, Redwood Viscometer–I and Cleveland open cup apparatus.

Abstract

This paper aimed to characterization of like thermal conductivity, viscosity, flash point and fire point tests of CuO based engine oils. CuO based engine oils are synthesized nanoparticles. XRD and TEM analytical techniques are used in preparation in nanoparticles and three different types of (0.1%, 0.2% and 0.5%) mass concentrations of CuO nanoparticles are mixed to commercially available engine oil for the experimental investigations. KD2 pro thermal property analyzer, Redwood Viscometer–I and Cleveland open cup apparatus are used to evaluate quality parameters like thermal conductivity, viscosity, flash and fire point of nanoparticle engine oil.

References

  1. T.–H. Hong, H.-S. Yang, and C. J. Choi (2005). “Study of the Enhanced Thermal Conductivity of Fe Nanofluids.” Journal of Applied Physics vol. 97: 064311.
  2. Chopkar, M. P. K. Das, & I. Manna 2006, “Synthesis and characterization of nanofluid for advanced heat transfer applications”, Scr. Mater, vol. 55, pp. 549–552.
  3. Hwang YJ, Ahn YC, Shin HS, Lee CG, Kim GT, Park HS, Lee JK (2006) “Investigation on characteristics of thermal conductivity enhancement of nanofluids”. Curr Appl Phys vol.6: pp.1068–1071
  4. Sarit k. Das, Stephen U.S. Choi, Wenhua Yu & T. Pradeep, 2007, “Nanofluids science & technology”, A John Wiley & Sons, Inc., Publication.

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Published

2017-04-30

Issue

Section

Research Articles

How to Cite

[1]
Sk Salman Basha, " Preparation and Experimental Investigation of CUO Nanoparticles Based Engine OILS, International Journal of Scientific Research in Science and Technology(IJSRST), Online ISSN : 2395-602X, Print ISSN : 2395-6011, Volume 3, Issue 3, pp.451-455, March-April-2017.