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Crack phase-field model equipped with plastic driving force and degrading fracture toughness for ductile fracture simulation
This study presents a novel phase-field model for ductile fracture by the introduction of both the plastic driving force and the degrading fracture toughness into crack phase-field computations based on the phenomenological justification for ductile fracture in elastoplastic materials.
Bio‐Inspired Instability‐Induced Hierarchical Patterns Having Tunable Anisotropic Wetting Properties (Adv. Mater. Interfaces 14/2023)
Graphical Abstract Fabrication of Hierarchically-Patterned Surfaces In article number 2300039, So Nagashima, Ko Suzuki, and colleagues introduce a bottom-up method for fabricating bio-inspired hierarchical patterns with tunable anisotropic wetting properties. This method exploits the surface instability of bilayers comprising a gold nanofilm on a substantially pre-stretched elastomer substrate.
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