Failure process of fiber bundles with random misalignment
arXiv:2409.19159 · doi:10.1103/PhysRevResearch.6.033344
Abstract
We investigate the failure process of fiber bundles with structural disorder represented by the random misalignment of fibers. The strength of fibers is assumed to be constant so that misalignment is the only source of disorder, which results in a heterogeneous load distribution over fibers. We show by analytical calculations and computer simulations that increasing the amount of structural disorder a transition occurs from a perfectly brittle behaviour with abrupt global failure to a quasi-brittle phase where failure is preceded by breaking avalanches. The size distribution of avalanches follows a power law functional form with a complex dependence of the exponent on the amount of disorder. In the vicinity of the critical point the avalanche exponent is 3/2, however, with increasing disorder a crossover emerges to a higher exponent 5/2. We show analytically that the mechanical behaviour of the bundle of misaligned fiber with no strength disorder can be mapped to an equal load sharing fiber bundle of perfectly aligned fibers with properly selected strength disorder.
11 pages, 11 figures
References in corpus (26)
- Power-law distributions in empirical data
- Statistical Models of Fracture
- Statistical Physics of Fracture, Friction and Earthquake
- Critical Ruptures
- Crossover Behavior in Burst Avalanches of Fiber Bundles: Signature of Imminent Failure
- Creep rupture of viscoelastic fiber bundles
- Subcritical statistics in rupture of fibrous materials: Experiments and model
- Failure process of a bundle of plastic fibers
- Local load sharing fiber bundles with a lower cutoff of strength disorder
- Crossover behavior in failure avalanches
- Comment on "Tricritical Behavior in Rupture Induced by Disorder"
- Modes of failures in disordered solids
- Statistics of acoustic emission in paper fracture: precursors and criticality
- Universality class of fiber bundles with strong heterogeneities
- Temporal and spacial evolution of bursts in creep rupture
- Brittle to Ductile Transition in a Fiber Bundle with Strong Heterogeneity
- Fiber Bundle model with Highly Disordered Breaking Thresholds
- The Local load sharing fiber bundle model in higher dimensions
- Phase transition in the modified fiber bundle model
- Size scaling of failure strength with fat-tailed disorder in a fiber bundle model
- Avalanche dynamics in higher dimensional fiber bundle models
- Creep rupture as a non-homogeneous Poissonian process
- Transition from localized to mean field behaviour of cascading failures in the fiber bundle model on complex networks
- Phase transitions and correlations in fracture processes where disorder and stress compete
- Failure time in heterogeneous systems
- Brittle to quasibrittle transition in a compound fiber bundle