Bifurcation-induced dual Poynting effect in transversely isotropic hyperelastic bodies
Exploring the impact of thermal fluctuations on continuous models of adhesion
Modeling spider silk supercontraction as a hydration-driven solid–solid phase transition
A Physically‐Based Machine Learning Approach Inspires an Analytical Model for Spider Silk Supercontraction
Analytical and numerical solutions of pore formation in elastic food materials during dehydration
De-Hydration and Remodeling of Biological Materials: Swelling Theory for Multi-Domain Bodies
Effects of a nonlocal microstructure on peeling of thin films
Effects of Temperature and Random Forces in Phase Transformation of Multi-Stable Systems
Interplay between activity, elasticity, and liquid transport in self-contractile biopolymer gels
Modelling and simulation of growth driven by mechanical and non-mechanical stimuli
Modelling lipid rafts formation through chemo-mechanical interplay triggered by receptor–ligand binding
Modeling shear banding lipid monolayer collapse with finite element analysis
Multiscale and microstructure-inspired constitutive models for soft materials. On the occasion of Giuseppe Saccomandi’s 60th birthday
Physically based machine learning for hierarchical materials
Pore development in viscoelastic foods during drying.
Self-oscillations of submerged liquid crystal elastomer beams driven by light and self-shadowing.
Temperature‐Induced Effects on Wet‐Spun Artificial Spider Silk Fibers
The interplay between membrane viscosity and ligand-binding receptor kinetics in lipid bilayers
© INNOvative mathematical models for Soft MAtter and hieRarchical maTerials
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