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Aqueous ammonium thiocyanate solutions as refractive index-matching fluids with low density and viscosity

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Abstract

We show that aqueous solutions of ammonium thiocyanate (\(\hbox {NH}_{4}\hbox {SCN}\)) can be used to match the index of refraction of several transparent materials commonly used in experiments, while maintaining low viscosity and density compared to other common refractive index-matching liquids. We present empirical models for estimating the index of refraction, density, and kinematic viscosity of these solutions as a function of temperature and concentration. Finally, we summarize the chemical compatibility of ammonium thiocyanate with materials commonly used in apparatus.

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References

  • Bailey B, Yoda M (2003) An aqueous low-viscosity density- and refractive index-matched suspension system. Exp Fluids 35:1–3

    Article  Google Scholar 

  • Borrero-Echeverry D (2014) Subcritical transition to turbulence in Taylor–Couette flow. PhD thesis, School of Physics, Georgia Institute of Technology

  • Budwig R (1994) Refractive index matching methods for liquid flow investigations. Exp Fluids 17:350–355

    Article  Google Scholar 

  • Budwig R, Elger D, Hooper H, Slippy J (1993) Steady flow in abdominal aortic aneurysm models. J Biomech Eng 115:418–423

    Article  Google Scholar 

  • Budwig R, Egelhoff C, Tavoularis S (1997) Laminar pulsatile flow through an axisymmetric sudden expansion. J Fluids Eng 119:208–211

    Article  Google Scholar 

  • Donnelly R (1981) Fluid dynamics. In: Anderson H (ed) Fluid dynamics. American Institute of Physics 50th Anniversary Physics Vade Mecum, American Institute of Physics

  • Egelhoff C, Budwig R, Elger D, Khraishi T, Johansen K (1999) Model studies of the flow in abdominal aortic aneurysms during resting and exercise conditions. J Biomech 32:1319–1329

    Article  Google Scholar 

  • Jan D, Shapiro A, Kamm R (1989) Some features of oscillatory flow in a model bifurcation. J Appl Physiol 67:147–159

    Google Scholar 

  • Kaminsky M (1957) Experimentelle Untersuchungen über die Konzentrations- und Temperaturabhängigkeit der Zähigkeit wäriger Lösungen starker Elektrolyte. Z Phys Chem 12:206–231

    Article  Google Scholar 

  • Narrow TL (1998) Flow visualization within a seven-rod micro-bundle. Master’s thesis, School of Mechanical Engineering, Georgia Institute of Technology

  • Narrow TL, Yoda M, Abdel-Khalik SI (2000) A simple model for the refractive index of sodium iodide aqueous solutions. Exp Fluids 28:282–283

    Article  Google Scholar 

  • Patil VA, Liburdy JA (2013) Flow characterization using PIV measurements in a low aspect ratio randomly packed porous bed. Exp Fluids 54:1497

    Article  Google Scholar 

  • Washburn EW (ed) (2003) International critical tables of numerical data, physics, chemistry and technology, 1st electronic edition. Knovel, Norwich

Download references

Acknowledgments

The authors would like to thank M.F. Schatz, who supported early stages of this work with funds from National Science Foundation, Grant #CBET-0853691. Additional support for this project was provided by the Summer Scholarship Fund and the James Borders Physics Student Fellowship at Reed College. The authors also thank M. Yoda, who provided the hydrometers used in this work.

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Correspondence to D. Borrero-Echeverry.

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Borrero-Echeverry, D., Morrison, B.C.A. Aqueous ammonium thiocyanate solutions as refractive index-matching fluids with low density and viscosity. Exp Fluids 57, 123 (2016). https://doi.org/10.1007/s00348-016-2207-8

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  • DOI: https://doi.org/10.1007/s00348-016-2207-8

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