Publication | Closed Access
Thermoresponsive Toughening with Crack Bifurcation in Phase‐Separated Hydrogels under Isochoric Conditions
122
Citations
40
References
2016
Year
Materials ScienceHydrogelsBiopolymer GelEngineeringMechanical PropertiesIsochoric ConditionsSelf-healing MaterialMechanical EngineeringPolymer SciencePhase‐separated HydrogelsPolyelectrolyte GelCrack BifurcationSelf-healing SurfacePhase-separated HydrogelsMechanics Of MaterialsSol-gel SynthesisNovel Mode
A novel mode of gel toughening displaying crack bifurcation is highlighted in phase-separated hydrogels. By exploring original covalent network topologies, phase-separated gels under isochoric conditions demonstrate advanced thermoresponsive mechanical properties: excellent fatigue resistance, self-healing, and remarkable fracture energies. Beyond the phase-transition temperature, the fracture proceeds by a systematic crack-bifurcation process, unreported so far in gels.
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