Intermittent Peel Front Dynamics and the Crackling Noise in an Adhesive Tape
arXiv:0812.0202 · doi:10.1103/PhysRevE.78.066119
Abstract
We report a comprehensive investigation of a model for peeling of an adhesive tape along with a nonlinear time series analysis of experimental acoustic emission signals in an effort to understand the origin of intermittent peeling of an adhesive tape and its connection to acoustic emission. The model represents the acoustic energy dissipated in terms of Rayleigh dissipation functional that depends on the local strain rate. We show that the nature of the peel front exhibits rich spatiotemporal patterns ranging from smooth, rugged and stuck-peeled configurations that depend on three parameters, namely, the ratio of inertial time scale of the tape mass to that of the roller, the dissipation coefficient and the pull velocity. The stuck-peeled configurations are reminiscent of fibrillar peel front patterns observed in experiments. We show that while the intermittent peeling is controlled by the peel force function, the model acoustic energy dissipated depends on the nature of the peel front and its dynamical evolution. Even though the acoustic energy is a fully dynamical quantity, it can be quite noisy for a certain set of parameter values suggesting the deterministic origin of acoustic emission in experiments. To verify this suggestion, we have carried out a dynamical analysis of experimental acoustic emission time series for a wide range of traction velocities. Our analysis shows an unambiguous presence of chaotic dynamics within a subinterval of pull speeds within the intermittent regime. Time series analysis of the model acoustic energy signals is also found to be chaotic within a subinterval of pull speeds.
22 pages, 16 figures. To appear in Phys. Rev. E
References in corpus (11)
- Intermittent dislocation flow in viscoplastic deformation
- Multifractal burst in the spatio-temporal dynamics of jerky flow
- A dynamical approach to the spatiotemporal aspects of the Portevin-Le Chatelier effect: Chaos,turbulence and band propagation
- Power law statistics of avalanches in martensitic transformation
- Missing physics in stick-slip dynamics of a model for peeling of an adhesive tape
- Imaging the stick-slip peeling of an adhesive tape under a constant load
- Dynamics of the peel front and the nature of acoustic emission during peeling of an adhesive tape
- Acoustic Emission and Shape Memory Effect in the Martensitic Transformation
- Power Laws, Precursors and Predictability During Failure
- Dynamics of stick-slip in peeling of an adhesive tape
- Hidden Order in Crackling Noise during Peeling of an Adhesive Tape
Cited by in corpus (7)
- Hidden order in serrated flow of metallic glasses
- General framework for acoustic emission during plastic deformation
- Multi-scale Modeling Approach to Acoustic Emission during Plastic Deformation
- Modeling the complexity of acoustic emission spectra during intermittent plastic deformation: Power laws and multifractal spectra
- Projecting Low Dimensional Chaos from Spatio-temporal Dynamics in a Model for Plastic Instability
- Influence of Visco-elastic Nature on the Intermittent Peel Front Dynamics of the Adhesive Tape
- A tape-peeling model for spatiotemporal pattern formation by deformed adhesives