Biomedical Engineering Reference
In-Depth Information
26. Barnes, H. A., A review of the slip (wall depletion) of polymer solutions, emulsions and particle
suspensions in viscometers: its cause, character, and cure. J. Non-Newton. Fluid Mech., 56 (1995)
221-251.
27. Luu, L. and Forterre, Y., Drop impact of yield-stress fluids. J. Fluid Mech., 632 (2009) 301-327.
28. Roberts, G. P. and Barnes, H. A., New measurements of the flow-curves for Carbopol dispersions
without slip artefacts. Rheol Acta, 40 (2001) 499-503.
29. Bergeron, V., Bonn, D., Martin, J. Y. and Vovelle, L., Controlling droplet deposition with polymer
additives. Nature, 405 (2000) 772-775.
30. Bergeron, V., Designing intelligent fluids for controlling spray applications. C. R. Phys., 4 (2003)
211-219.
31. Zhang, X. G. and Basaran, O. A., Dynamic surface tension effects in impact of a drop with a solid
surface. J. Colloid Interface Sci., 187 (1997) 166-178.
32. Mourougou-Candoni, N., Prunet-Foch, B., Legay, F., Vignes-Adler, M. and Wong, K., Influence
of dynamic surface tension on the spreading of surfactant solution droplets impacting onto a low-
surface-energy solid substrate. J. Colloid Interface Sci., 192 (1997) 129-141.
33. Crooks, R. and Boger, D. V., Influence of fluid elasticity on drops impacting on dry surfaces.
J. Rheol., 44 (2000) 973-996.
34. Cooper-White, J., Crooks, R. and Boger, D. V., A drop impact study of worm-like viscoelastic
surfactant solutions. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 210
(2002) 105-123.
35. Bird, R. B., Armstrong, R. C. and Hassager, O., Dynamics of Polymeric Liquids. Wiley, New
York, 1987.
36. De Gennes, P.-G., Coil-stretch transition of dilute flexible polymers under ultrahigh velocity gra-
dients. J. Chem. Phys., 60 (1974) 5030-5042.
37. Crooks, R., Cooper-White, J. and Boger, D. V., The role of dynamic surface tension and elasticity
on the dynamics of drop impact. Chem. Eng. Sci., 56 (2001) 5575-5592.
38. Williams, P. A., English, R. J., Blanchard, R. L., Rose, S. A., Lyons, L. and Whitehead, M., The
influence of the extensional viscosity of very low concentrations of high molecular mass water-
soluble polymers on atomization and droplet impact. Pest Management Sci., 64 (2008) 497-504.
39. Rozhkov, A., Prunet-Foch, B. and Vignes-Adler, M., Impact of water on small targets. Phys. Flu-
ids, 14 (2002) 3485-3501.
40. Bertola, V., An experimental study of bouncing Leidenfrost drops: comparison between Newto-
nian and viscoelastic liquids. International Journal of Heat and Mass Transfer, 52 (2009) 1786-
1793.
41. Boffetta, G., Mazzino, A., Musacchio, S. and Vozella, L., Polymer heat transport enhancement in
thermal convection: the case of Rayleigh-Taylor turbulence. Phys. Rev. Lett., 104 (2010) 184501.
42. Bartolo, D., Boudaoud, A., Narcy, G. and Bonn, D., Dynamics of non-Newtonian droplets. Phys.
Rev. Lett., 99 (2007) 174502.
43. Bertola, V., The effect of polymer additives on the apparent dynamic contact angle of impacting
drops. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 363 (2010) 135-140.
44. Smith, M. I. and Bertola, V., Effect of polymer additives on the wetting of impacting droplets.
Physical Review Letters, 104 (2010) 154502.
45. Smith, M. I. and Bertola, V., The anti-rebound effect of flexible polymers on impacting drops,
in: Proc. 23rd European Conference on Liquid Atomization and Spray Systems, Brno, Czech
Republic, 6-8 September, 2010.
46. Smith, M. I. and Bertola, V., Particle velocimetry inside Newtonian and non-Newtonian droplets
impacting a hydrophobic surface. Experiments in Fluids, 50 (2011) 1385-1391.
Search WWH ::




Custom Search