Development of a falling ball rheometer with applications to opaque systems: measurements of the rheology of suspensions of rods
With falling ball rheometry, we have measured the apparent relative viscosity of suspensions of large, neutrally buoyant, rigid rods in a viscous Newtonian fluid, while approximately maintaining the rods in a randomly oriented configuration. A new technique for measuring the time of flight of a ball...
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Published in | Journal of rheology (New York : 1978) Vol. 33; no. 7; pp. 1173 - 1188 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Melville, NY
Society of Rheology
01.10.1989
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Subjects | |
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Abstract | With falling ball rheometry, we have measured the apparent relative viscosity of suspensions of large, neutrally buoyant, rigid rods in a viscous Newtonian fluid, while approximately maintaining the rods in a randomly oriented configuration. A new technique for measuring the time of flight of a ball between two positions is used. This computerized technique, based upon an eddy current detector, enables us to determine the position of a metallic (nonmagnetic) ball falling through an opaque suspension, with high accuracy (less than 1.5% error). The rods for the suspensions had a nominal aspect ratio of 10 and experiments were carried out at a single volume fraction, 0.05. Two populations of rods were used to having nominal diameters of 1.5875 mm and 3.175 mm. To within the errors of these experiments, suspensions from both populations had the same relative viscosity, with the overall average being 1.457. This viscosity was significantly different from that of a similar suspension (volume fraction=0.05) of rods of nominal aspect ratio 20 and it agreed well with theoretical results for the viscosity of a dilute suspension of randomly oriented rods. |
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AbstractList | With falling ball rheometry, we have measured the apparent relative viscosity of suspensions of large, neutrally buoyant, rigid rods in a viscous Newtonian fluid, while approximately maintaining the rods in a randomly oriented configuration. A new technique for measuring the time of flight of a ball between two positions is used. This computerized technique, based upon an eddy current detector, enables us to determine the position of a metallic (nonmagnetic) ball falling through an opaque suspension, with high accuracy (less than 1.5% error). The rods for the suspensions had a nominal aspect ratio of 10 and experiments were carried out at a single volume fraction, 0.05. Two populations of rods were used to having nominal diameters of 1.5875 mm and 3.175 mm. To within the errors of these experiments, suspensions from both populations had the same relative viscosity, with the overall average being 1.457. This viscosity was significantly different from that of a similar suspension (volume fraction=0.05) of rods of nominal aspect ratio 20 and it agreed well with theoretical results for the viscosity of a dilute suspension of randomly oriented rods. |
Author | Powell, Robert L. Mondy, Lisa A. Milliken, William J. Stoker, Gerald G. Graham, Alan L. |
Author_xml | – sequence: 1 givenname: Robert L. surname: Powell fullname: Powell, Robert L. organization: Department of Chemical Engineering, University of California, Davis, California 95616 – sequence: 2 givenname: Lisa A. surname: Mondy fullname: Mondy, Lisa A. organization: Sandia National Laboratories, Albaquerque, New Mexico 87185 – sequence: 3 givenname: Gerald G. surname: Stoker fullname: Stoker, Gerald G. organization: Sandia National Laboratories, Albaquerque, New Mexico 87185 – sequence: 4 givenname: William J. surname: Milliken fullname: Milliken, William J. organization: Department of Chemical Engineering, University of California, Davis, California 95616 – sequence: 5 givenname: Alan L. surname: Graham fullname: Graham, Alan L. organization: Los Alamos National Laboratory, Los Alamos, New Mexico 87545 |
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Keywords | TIME-OF-FLIGHT METHOD SUSPENSIONS DATA ACQUISITION VISCOSITY RODS EDDY CURRENTS ACCURACY Measuring instrument Falling sphere viscosimeter Viscosity Rheology Opaque medium Measurement method Particle suspension Experimental study Viscosimeter |
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Snippet | With falling ball rheometry, we have measured the apparent relative viscosity of suspensions of large, neutrally buoyant, rigid rods in a viscous Newtonian... |
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SubjectTerms | 640410 - Fluid Physics- General Fluid Dynamics ACCURACY CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY CURRENTS DATA ACQUISITION DISPERSIONS EDDY CURRENTS ELECTRIC CURRENTS Exact sciences and technology Fluid dynamics Fundamental areas of phenomenology (including applications) Instrumentation for fluid dynamics Physics RODS SUSPENSIONS TIME-OF-FLIGHT METHOD VISCOSITY |
Title | Development of a falling ball rheometer with applications to opaque systems: measurements of the rheology of suspensions of rods |
URI | http://dx.doi.org/10.1122/1.550054 https://www.osti.gov/biblio/5218919 |
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