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pro vyhledávání: '"R.E. Rosensweig"'
Autor:
R.E. Rosensweig
Publikováno v:
Journal of Magnetism and Magnetic Materials. 479:301-306
It is known that a suspension of relatively large micron-size particles dispersed in a ferrofluid of much smaller particles yields a magnetorheological flui d with superior properties. In the absence of applied field experiment reveals the presence o
Autor:
R.E. Rosensweig
Publikováno v:
Journal of Magnetism and Magnetic Materials. 498:166016
This addendum updates the article published recently in this journal as Magnetorheological Particle Clouds, 479 (2019) 301–306 by this author. The theory and certain updated aspects were presented at ICMF 2019, Paris.
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Autor:
R.E. Rosensweig
Publikováno v:
International Journal of Refrigeration. 29:1250-1258
This study examines the feasibility of using magnetic particles in liquid suspension as a working fluid to achieve room temperature refrigeration with a permanent magnetic field source. Potential advantages include facilitation of regenerative heat t
Publikováno v:
Journal of Magnetism and Magnetic Materials. 289:192-195
An optical system using reflections of a narrow laser beam to measure the height and shape of a ferrofluid meniscus in response to uniform applied magnetic fields finds that meniscus height on a vertical flat wall decreases in horizontal applied fiel
Autor:
R.E. Rosensweig
Publikováno v:
Journal of Magnetism and Magnetic Materials. 201:1-6
This work suggests that van der Waals attraction of small colloidal particles to large colloidal particles can establish a cloud of the small particles that tends to shield the larger ones from agglomerating to each other. With consideration of the f
Autor:
R.E Rosensweig
Publikováno v:
Journal of Electrostatics. 34:163-187
Studies over the past two to three decades concerning the influence of electromagnetic fields on the stability of two-fluid systems have defined a remarkable diversity of phenomena and related application concepts. This report examines stationary and
Autor:
G. Ciprios, R.E. Rosensweig
Publikováno v:
Powder Technology. 64:115-123
This work concerns a novel phenomenon in which magnetization of the fluidizing fluid, a ferrofluid, stabilizes the state of uniform fluidization in a bed of nonmagnetic particles. Stability analysis of the two-phase flow using mean field theory to de