RHEOLOGICAL PARAMETER ESTIMATION OF CMC SOLUTIONS USING MAGNETIC RESONANCE IMAGING (MRI)
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Turkish Journal of Engineering
Reference6 articles.
1. REFERENCES Arola, D.F., Barrall, G.A., Powell, R.L., McCarthy, K.L., McCarthy, M.J., (1997). “Use of nuclear magnetic imaging as a viscometer for process monitoring.” Chem. Eng. Sci., Vol.52, No.13, pp 2049–2057.
2. Arola, D. F., Powell, R. L., Barrall, G. A. & McCarthy, M. J. (1998). “A simplified method for accuracy estimation of nuclear magnetic resonant imaging..” Rev. Sci. Instrum. Vol.69, No.13, pp. 3300–3307.
3. Arola, D. F., Powell, R. L., Barrall, G. A. & McCarthy, M. J. (1999) “Pointwise observation for rheological characterization using nuclear magnetic resonance imaging..” J. Rheol. Vol.43, No.1, pp. 9–30.
4. Benchabane, A. & Bekkour, K. (2008). “Rheological properties of carboxymethyl cellulose (CMC) solutions.” Colloid Polym. Sci. Vol. 286, No.10, pp.1173–1180.
5. Callaghan, P. T. (1999). “Rheo-NMR: nuclear magnetic resonance and the rheology of complex fluids.” Reports Prog. Phys. Vol.62, No. 4, pp. 599–670. Choi, Y. J., McCarthy, K. L. & McCarthy, M. J. (2005) “A MATLAB graphical user interface program for tomographic viscometer data processing.” Comput. Electron. Agric. Vol.47, No.3, pp.59–67.
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