Search results for "Cohesive-frictional interface"

showing 3 items of 3 documents

A coupled plasticity-damage cohesive-frictional interface for low-cycle fatigue analysis

2022

A novel thermodynamically consistent cohesive-frictional model for the analysis of interface degradation and failure under either monotonic quasi-static loading or cyclic loading in low-cycle fatigue problems is proposed. Starting from the definition of a suitable Helmholtz energy density function, a phenomenological interface model is developed in the framework of plasticity and damage mechanics. In particular, a coupled plasticitydamage activation function is defined and employed together the consistent evolution rules to capture the evolution of damage and plasticity under the action of the external loads. Due to the specific features of such threshold and flow rules, the initiation and …

Mechanics of MaterialsMechanical EngineeringGeneral Materials ScienceSettore ICAR/08 - Scienza Delle CostruzioniSettore ING-IND/04 - Costruzioni E Strutture AerospazialiCondensed Matter PhysicsCohesive zone modelling Low-cycle fatigue analysis Damage Elastic–plastic cohesive-frictional interface Composite bondingCivil and Structural EngineeringInternational Journal of Mechanical Sciences
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Cyclic Delamination Analysis: Experimental and Cohesive-Frictional interface Finite Element Modelling

2011

Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineCyclic DelaminationSettore ICAR/08 - Scienza Delle CostruzioniCohesive-Frictional Interface
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A thermodynamically consistent cohesive-frictional interface model for mixed mode delamination

2016

Abstract A new interface constitutive model based on damage mechanics and frictional plasticity is presented. The model is thermodynamically consistent, it is able to accurately reproduce arbitrary mixed mode debonding conditions and it is proved that the separation work is always bounded between the fracture energy in mode I and the fracture energy in mode II. Analytical results are given for proportional loading paths and for two non-proportional loading paths, confirming the correct behavior of the model for complex loading histories. Numerical and analytical solutions are compared for three classical delamination tests and frictional effects on 4ENF are also considered.

Work (thermodynamics)Materials scienceConstitutive equation02 engineering and technologyPlasticity01 natural sciencesThermodynamic0203 mechanical engineeringDamage mechanicsMechanics of MaterialGeneral Materials Science0101 mathematicsComposite materialSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria IndustrialeMechanical EngineeringCohesive-frictional interfaceDelaminationMode (statistics)Fracture mechanicsMechanicsStrength of materials010101 applied mathematics020303 mechanical engineering & transportsMechanics of MaterialsMixed-mode delaminationMaterials Science (all)Settore ICAR/08 - Scienza Delle CostruzioniEngineering Fracture Mechanics
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