Impact-Activated Solidification of Cornstarch and Water Suspensions (e-bog) af Waitukaitis, Scott R.
Waitukaitis, Scott R. (forfatter)

Impact-Activated Solidification of Cornstarch and Water Suspensions e-bog

875,33 DKK (inkl. moms 1094,16 DKK)
This thesis approaches impact resistance in dense suspensions from a new perspective. The most well-known example of dense suspensions, a mixture of cornstarch and water, provides enough impact resistance to allow a person to run across its surface. In the past, this phenomenon had been linked to &quote;shear thickening&quote; under a steady shear state attributed to hydrodynamic interactions o...
E-bog 875,33 DKK
Forfattere Waitukaitis, Scott R. (forfatter)
Forlag Springer
Udgivet 28 juli 2014
Genrer Classical mechanics
Sprog English
Format pdf
Beskyttelse LCP
ISBN 9783319091839
This thesis approaches impact resistance in dense suspensions from a new perspective. The most well-known example of dense suspensions, a mixture of cornstarch and water, provides enough impact resistance to allow a person to run across its surface. In the past, this phenomenon had been linked to "e;shear thickening"e; under a steady shear state attributed to hydrodynamic interactions or granular dilation. However, neither explanation accounted for the stress scales required for a person to run on the surface. Through this research, it was discovered that the impact resistance is due to local compression of the particle matrix. This compression forces the suspension across the jamming transition and precipitates a rapidly growing solid mass. This growing solid, as a result, absorbs the impact energy. This is the first observation of such jamming front, linking nonlinear suspension dynamics in a new way to the jamming phase transition known from dry granular materials.