Forces and torques on rigid inclusions in an elastic environment: resulting matrix-mediated interactions, displacements, and rotations
arXiv:1611.08823 · doi:10.1103/PhysRevE.95.053002
Abstract
Embedding rigid inclusions into elastic matrix materials is a procedure of high practical relevance, for instance for the fabrication of elastic composite materials. We theoretically analyze the following situation. Rigid spherical inclusions are enclosed by a homogeneous elastic medium under stick boundary conditions. Forces and torques are directly imposed from outside onto the inclusions, or are externally induced between them. The inclusions respond to these forces and torques by translations and rotations against the surrounding elastic matrix. This leads to elastic matrix deformations, and in turn results in mutual long-ranged matrix-mediated interactions between the inclusions. Adapting a well-known approach from low-Reynolds-number hydrodynamics, we explicitly calculate the displacements and rotations of the inclusions from the externally imposed or induced forces and torques. Analytical expressions are presented as a function of the inclusion configuration in terms of displaceability and rotateability matrices. The role of the elastic environment is implicitly included in these relations. That is, the resulting expressions allow a calculation of the induced displacements and rotations directly from the inclusion configuration, without having to explicitly determine the deformations of the elastic environment. In contrast to the hydrodynamic case, compressibility of the surrounding medium is readily taken into account. We present the complete derivation based on the underlying equations of linear elasticity theory. In the future, the method will, for example, be helpful to characterize the behavior of externally tunable elastic composite materials, to accelerate numerical approaches, as well as to improve the quantitative interpretation of microrheological results.
24 pages, 9 figures
References in corpus (11)
- The hydrodynamics of swimming microorganisms
- Tuned, driven, and active soft matter
- Effects of particle distribution on mechanical properties of magneto-sensitive elastomers in a homogeneous magnetic field
- Influence of hydrodynamic interactions on lane formation in oppositely charged driven colloids
- Hydrodynamic coupling of two rotating spheres trapped in harmonic potentials
- Structural control of elastic moduli in ferrogels and the importance of non-affine deformations
- Dynamic Elastic Moduli in Magnetic Gels: Normal Modes and Linear Response
- Forces on rigid inclusions in elastic media and resulting matrix-mediated interactions
- Tunable dynamic response of magnetic gels: impact of structural properties and magnetic fields
- Superelastic stress-strain behavior in ferrogels of different types of magneto-elastic coupling
- Faxen relations in solids - a generalized approach to particle motion in elasticity and viscoelasticity
Cited by in corpus (18)
- Magnetostriction in magnetic gels and elastomers as a function of the internal structure and particle distribution
- Reversible magnetomechanical collapse: virtual touching and detachment of rigid inclusions in a soft elastic matrix
- Tunable dynamic moduli of magnetic elastomers: from X-CT characterization to mesoscopic modeling
- Dynamics in a one-dimensional ferrogel model: relaxation, pairing, shock-wave propagation
- Memory-based mediated interactions between rigid particulate inclusions in viscoelastic environments
- Elasticity-Controlled Jamming Criticality in Soft Composite Solids
- Displacement field around a rigid sphere in a compressible elastic environment, corresponding higher-order Faxén relations, as well as higher-order displaceability and rotateability matrices
- A density functional approach to ferrogels
- Magnetically induced elastic deformations of magnetic gels and elastomers containing particles of mixed size
- Classical density functional theory for a two-dimensional isotropic ferrogel model with labeled particles
- Magnetic elastomers as specific soft actuators -- predicting particular modes of deformation from selected configurations of magnetizable inclusions
- Mediated interactions between rigid inclusions in two-dimensional elastic or fluid films
- Density functional approach to elastic properties of three-dimensional dipole-spring models for magnetic gels
- Rotating spherical particle in a continuous viscoelastic medium -- a microrheological example situation
- Ordering of adsorbed rigid rods mediated by the Boussinesq interaction on a soft substrate
- The role of boundaries for displacements and motion in two-dimensional fluid or elastic films and membranes
- Magnetorheological effect in elastomers containing uniaxial ferromagnetic particles
- Rotational dynamics of a disk in a thin film of weakly nematic fluid subject to linear friction