Experimental study on rheology with carbon nanotubes/water nanofluids
2011
0 views
0 downloads
Advisor: Dr. Thierry Mare ; Yrd. Doç. Dr. Nimeti Döner
Abstract (EN)
In this thesis, we worked with various concentrations of carbon nanotubes/water nanofluids at wide temperatures range such as 0-50°C and viscosity of CNT nanofluids have been investigated. Additionally, time effect and mixing effect have been researched with experimental methods. CNT/water nanofluids have been shown different behavior than compared to conventional fluids. They were showing time dependent effect during the experimental periods. Hence, it shows to different behavior between low shear rates and high shear rates and the mixing effect is active on change of viscosity. During the experiment it has shown that viscosity was changing with waiting time and each waiting time was making more viscous than previous measurements. Besides, the temperature effect has been investigated at low and high concentrations. It would appear that viscosity increase with decrease temperatures and increase particle concentrations.
Author
Bahadır Aladağ
Institution
How to Cite
Bahadır Aladağ (Master Thesis). Experimental study on rheology with carbon nanotubes/water nanofluids, 2011, Kütahya Dumlupınar University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Kütahya Dumlupınar University
- Comparision of the leg and ARM CYCLE ergometer exercises in terms of the effects on physical and psychological functions in patients with undergoing coronary arter bypass surgery(2016)
- The production and characterization of zirconia-zirconium diboride (ZrO2-ZrB2) composites for structural applications(2016)
- The reflections of government grants on renewable energy sector in Turkey(2016)
- The analysis of regulation and supervision agencies' budget structures in Turkey: Banking Regulation and Supervision Agency sample (2005 - 2014 Period)(2016)
- Choised based conjoint analysis and an application(2016)
- Development of sepiolite doped materials in cement mortar adhesive(2016)