Memory of jamming - multiscale models for soft and granular matter
arXiv:1407.6167 · doi:10.1007/s10035-016-0624-2
Abstract
Soft, disordered, micro-structured materials are ubiquitous in nature and industry, and are different from ordinary fluids or solids, with unusual, interesting static and flow properties. The transition from fluid to solid -at the so-called jamming density- features a multitude of complex mechanisms, but there is no unified theoretical framework that explains them all. In this study, a simple yet quantitative and predictive model is presented, which allows for a variable, changing jamming density, encompassing the memory of the deformation history and explaining a multitude of phenomena at and around jamming. The jamming density, now introduced as a new state-variable, changes due to the deformation history and relates the system's macroscopic response to its microstructure. The packing efficiency can increase logarithmically slow under gentle repeated (isotropic) compression, leading to an increase of the jamming density. In contrast, shear deformations cause anisotropy, changing the packing efficiency exponentially fast with either dilatancy or compactancy. The memory of the system near jamming can be explained by a microstatistical model that involves a multiscale, fractal energy landscape and links the microscopic particle picture to the macroscopic continuum description, providing a unified explanation for the qualitatively different flow-behavior for different deformation modes. To complement our work, a recipe to extract the history-dependent jamming density from experimentally accessible data is proposed, and alternative state-variables are compared. The proposed simple macroscopic constitutive model is calibrated with the memory of microstructure. Such approach can help understanding predicting and mitigating failure of structures or geophysical hazards, and will bring forward industrial process design/optimization, and help solving scientific challenges in fundamental research.
References in corpus (20)
- Jamming at Zero Temperature and Zero Applied Stress: the Epitome of Disorder
- The Jamming Transition in Granular Systems
- Jamming of frictional spheres and random loose packing
- Frictionless bead packs have macroscopic friction, but no dilatancy
- Jamming versus Glass Transitions
- A Landscape Analysis of Constraint Satisfaction Problems
- Universal microstructure and mechanical stability of jammed packings
- Spanning the Scales of Granular Materials: Microscopic Force Imaging
- Soft Sphere Packings at Finite Pressure but Unstable to Shear
- Critical Scaling of Shearing Rheology at the Jamming Transition of Soft Core Frictionless Disks
- Disentangling the role of structure and friction in shear jamming
- Role of gravity or confining pressure and contact stiffness in granular rheology
- Tuning the bulk properties of bidisperse granular mixtures by small amount of fines
- New jamming scenario: From marginal jamming to deep jamming
- Avalanche contribution to shear modulus of granular materials
- Sheared force-networks: anisotropies, yielding and geometry
- Applying GSH to a Wide Range of Experiments in Granular Media
- (Ir)reversibility in dense granular systems driven by oscillating forces
- Divergence of Viscosity in Jammed Granular Materials: A Theoretical Approach
- Response to perturbations for granular flow in a hopper
Cited by in corpus (32)
- Granular materials flow like complex fluids
- High-speed ultrasound imaging in dense suspensions reveals impact-activated solidification due to dynamic shear jamming
- Exploring the jamming transition over a wide range of critical densities
- Multiple quantum Mpemba effect: exceptional points and oscillations
- Shear jammed, fragile, and steady states in homogeneously strained granular materials
- Unified phase diagram of reversible-irreversible, jamming and yielding transitions in cyclically sheared soft sphere packings
- Merging fluid and solid granular behavior
- A jamming plane of sphere packings
- Dynamic shear jamming in dense granular suspensions under extension
- A review on shear jamming
- Shear jamming, discontinuous shear thickening, and fragile states in dry granular materials under oscillatory shear
- Stress anisotropy in shear-jammed packings of frictionless disks
- Force networks and jamming in shear deformed sphere packings
- Pressure-dependent shear response of jammed packings of spherical particles
- Additional transition line in jammed asymmetric bidisperse granular packings
- Ultra-stable shear jammed granular material
- Elasticity-Controlled Jamming Criticality in Soft Composite Solids
- Scaling laws for frictional granular materials confined by constant pressure under oscillatory shear
- Flow and Arrest in Stressed Granular Materials
- Bulk Modulus along Jamming Transition Lines of Bidisperse Granular Packings
- Why Granular Media Are Thermal, and Quite Normal, After All
- Sheared Amorphous Packings Display Two Separate Particle Transport Mechanisms
- Granular piston-probing in microgravity: powder compression, from densification to jamming
- Structural features of jammed-granulate metamaterials
- A local view on the role of friction and shape
- Shear hardening in frictionless amorphous solids near the jamming transition
- Geometrical properties of mechanically annealed systems near the jamming transition
- Jamming is a first-order transition with quenched disorder in amorphous materials sheared by cyclic quasistatic deformations
- Microscopic Reversibility and Emergent Elasticity in Ultrastable Granular Systems
- Vibrational similarities in jamming-unjamming of polycrystalline and disordered granular packings
- Computational Methods toward Ultrastable Glasses
- Criticality and marginal stability of the shear jamming transition of frictionless soft spheres