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Updated: Aug 9, 2026

Measuring Material Microstructure Under Flow Using 1-2 Plane Flow-Small Angle Neutron Scattering
Published on: February 6, 2014
Shear-induced discontinuous and continuous topological transitions in a hyperswollen membrane system
Hajime Tanaka1, Mamoru Isobe, Hideyuki Miyazawa
1Institute of Industrial Science, University of Tokyo, Meguro-ku, Tokyo 153-8505, Japan. tanaka@iis.u-tokyo.ac.jp
Abstract:
Here we demonstrate that both discontinuous and continuous transition between the sponge and lamellar phase can be induced by steady shear flow for a hyperswollen membrane system. The discontinuous nature of the transition is revealed by a distinct hysteresis in the rheological behavior between shear-rate increasing and decreasing measurements at a constant temperature. This discontinuity becomes weaker with an increase in the shear rate and temperature, and the transition eventually becomes a continuous one without any hysteresis. We also found another shear-induced transition in a one-phase lamellar region. The dynamic phase diagram in a nonequilibrium steady state under shear is constructed for the sponge-lamellar transition as well as another transition in a stable lamellar phase. Possible physical mechanisms for these shear-induced transitions are discussed.
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