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Автор Tanaka, Hajime
Автор Araki, Takeaki
Дата выпуска 2007-09-01
dc.description Colloidal suspensions can be regarded as an ideal model system for such key daily materials as emulsions, protein solutions, foods, and inks. When colloidal particles strongly attract each other, they aggregate, phase-separate, and sometimes form gels. The basic understanding of this spatially heterogeneous jamming process is of crucial importance from both scientific and industrial viewpoints. Usually it is believed that if colloids attract very strongly with adhesion energy more than 10 times the thermal energy, networks formed by aggregation do not coarsen with time and a stable gel is immediately formed. Contrary to this common belief, we demonstrate by numerical simulation that the coarsening of a colloidal network can proceed by self-generated mechanical stress even without any thermal noise for a system of long-range interactions: fracture-induced coarsening. This remarkable kinetic pathway of purely mechanical origin may shed new light on our basic understanding of the stability and aging (or coarsening) behaviour of colloidal gels.
Формат application.pdf
Издатель Institute of Physics Publishing
Копирайт Europhysics Letters Association
Название Spontaneous coarsening of a colloidal network driven by self-generated mechanical stress
Тип lett
DOI 10.1209/0295-5075/79/58003
Electronic ISSN 1286-4854
Print ISSN 0295-5075
Журнал EPL (Europhysics Letters)
Том 79
Первая страница 58003
Последняя страница 58008
Аффилиация Tanaka, Hajime; Institute of Industrial Science, University of Tokyo - Meguro-ku, Tokyo 153-8505, Japan
Аффилиация Araki, Takeaki; Institute of Industrial Science, University of Tokyo - Meguro-ku, Tokyo 153-8505, Japan
Выпуск 5

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