Search results for "Fatigue."

showing 10 items of 621 documents

A theoretical and experimental study to point out the notion of loading mode in damage mechanicsApplication to the identification and validation of a…

2002

A model of fatigue-induced intralaminar cracking in strongly anisotropic laminates is presented. The features of the microscopic phenomenon are explicitly taken into account at the macroscopic level by the use of two variables, which define a new concept in Damage Mechanics that results not only in a coherent model of crack density evolution, but also in a coherent treatment of damage deactivation. Damage evolution indeed is strongly dependent on the local loading mode in each ply where cracking occurs. Experiments on complex lay-ups provided sufficient data for complete calibration of the model. These tests also allowed to validate the theoretical choice of the damage variable. Finally, nu…

Materials sciencebusiness.industryMechanical EngineeringMode (statistics)Fracture mechanicsStructural engineeringFatigue limitIndustrial and Manufacturing EngineeringCrackingMechanics of MaterialsModeling and SimulationDamage mechanicsGeneral Materials SciencePoint (geometry)Composite materialbusinessAnisotropyVariable (mathematics)International Journal of Fatigue
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Critical Planes in Multiaxial Fatigue

2005

The paper includes a review of literature on the multiaxial fatigue failure criteria based on the critical plane concept. The criteria were divided into three groups according to the distinguished fatigue damage parameter used in the criterion, i.e. (i) stress, (ii) strain and (iii) strain energy density criteria. Each criterion was described mainly by the applied the critical plane position. The multiaxial fatigue criteria based on two critical planes seem to be the most promising. These two critical planes are determined by different fatigue damage mechanisms (shear and tensile mechanisms).

Materials sciencebusiness.industryPlane (geometry)Mechanical EngineeringFatigue testingStrain energy density functionFatigue damageStructural engineeringCondensed Matter PhysicsShear (sheet metal)Stress (mechanics)Mechanics of MaterialsUltimate tensile strengthGeneral Materials SciencebusinessMaterials Science Forum
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Critical and Fracture Planes of 18G2A Steel Under Nonproportional Combined Bending and Torsion

2008

Many multiaxial fatigue failure criteria of materials are based on the critical plane approach [1, 2, 3]. In these criteria, it is assumed that the fatigue failure of material is caused by stresses and/or strains acting in one plane (called critical) within the material. The proper orientation of that plane in fatigue failure criteria based on the critical plane concept must be established for fatigue life calculation. In the paper the damage accumulation method was used to determine the critical plane orientations. In this method, the critical plane is the plane where the maximum damage degree, computed according to the selected fatigue failure criterion, is the highest. The critical plane…

Materials sciencebusiness.industryPlane orientationFatigue testingTorsion (mechanics)Structural engineeringFracture planebusiness
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Experimental and numerical analysis of aluminum-aluminum bolted joints subject to an indentation process

2015

Abstract The increasing interest of the industry (especially automotive, aviation and marine) in the fastener joints (riveted, bolted, etc.) between metallic materials, has re-opened the study on the possibility to improve the performance of the drilled structure using plastic deformation processes. Indentation process, performed before the drilling operation, creates circumferential compression stresses around the hole which increase significantly the mechanical performance of the drilled structures. In this paper, static and the fatigue performances of aluminum–aluminum (AW 6082-T6) single-lap bolted joints are studied. In particular, the study compares the mechanical strength of only dri…

Materials sciencebusiness.product_categorybusiness.industryMechanical EngineeringStructural engineeringCompression (physics)FastenerIndustrial and Manufacturing EngineeringFinite element methodSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineMechanics of MaterialsResidual stressModeling and SimulationIndentationBolted jointSettore ING-IND/17 - Impianti Industriali MeccaniciGeneral Materials ScienceComposite materialbusinessSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria IndustrialeFailure mode and effects analysisJoint (geology)Single-lap joint Indentation process Residual stress Fatigue Finite element analysis
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Modeling the Fatigue Damage Evolution in Welded Joints

2017

The present paper presents a two-phase model for the fatigue damage evolution in welded steel joints. The argument for choosing a two-phase model is that crack initiation and subsequent crack propagation involve different damage mechanisms and should be treated separately. The crack initiation phase is defined as the number of cycles to reach a crack depth of 0.1 mm. This phase is modelled based on the Dang Van multiaxial stress approach. Both a multiaxial stress situation introduced by the acting loads and the presence of the multiaxial welding residual stresses are accounted for. The local notch effect at the weld toe becomes very important and the irregular weld toe geometry is character…

Materials sciencelawbusiness.industryFracture mechanicsFatigue damageWeldingStructural engineeringbusinessApplied mechanicsFatigue limitlaw.inventionVolume 4: Materials Technology
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Effects of different recovery parameters during resistance training exercices

2012

The high frequency of resistance training sessions induces heavy strain and fatigue phenomenon, which could be prejudicial for subsequent performance. In this context, it appears necessary to apply proper recovery strategies in order to improve the athlete’s ability to regain an adequate working state for subsequent training.Active recovery is widely described in the literature as the most efficient method for this purpose. It consists in low-intensity exercises, which could improve metabolites washout by increasing peripheral blood flow. To our knowledge, active recovery is usually applied globally, with exercises involving the whole body (light pedalling or running) but little is known re…

Maximal strengthNeuromuscular fatigueQuadriceps[SDV.MHEP] Life Sciences [q-bio]/Human health and pathologyRecovery[ SDV.MHEP ] Life Sciences [q-bio]/Human health and pathologyForce maximaleQuadriceps musclesRécupérationElectromyostimulation[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyÉlectromyostimulationFatigue neuromusculaire
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Generalized Fatigue Criterion of maximum shear and normal strains on the fracture plane for materials under multiaxial random loadings

1991

A generalized fatigue criterion for materials under multiaxial random loadings is presented. The criterion is based on the assumption that shear and normal strain on the expected fracture plane – shear strain in one direction on this plane is considered – determine the fracture plane. It has been shown that the well known fatigue criteria of maximum normal strain, maximum shear strain and the criterion of maximum shear and normal strains on the critical shear plane result from the newly formulated criterion.

Mechanical propertyMaterials sciencebusiness.industryMechanical EngineeringGENERALIZED FATIGUEStructural engineeringFracture planeCondensed Matter PhysicsPhysics::Fluid DynamicsCondensed Matter::Soft Condensed MatterShear modulusSimple shearCondensed Matter::Materials ScienceShear (geology)Mechanics of MaterialsShear stressGeneral Materials ScienceComposite materialbusinessStress intensity factorMaterialwissenschaft und Werkstofftechnik
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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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The impact of a mindfulness‐based intervention on the quality of life of Spanish national police officers

2020

Purpose Police officers belong to a profession with a high risk of stress, burnout and compassion fatigue. Incorporating mindfulness practices into the health and occupational-risk prevention programs run by the national police forces in Spain could provide a new approach to reducing stress and enhancing the psychological and emotional balance of these officers. Methods A 7-week mindfulness-based intervention (MBI) was conducted in a group of 20 national police officers in Mallorca (Spain). Mindfulness, self-compassion, burnout, compassion fatigue, compassion satisfaction and perceived stress were measured and compared before and after the intervention. Results We identified significant dif…

MindfulnessSociology and Political Sciencemedia_common.quotation_subjectCompassionBurnoutStress level03 medical and health sciences0302 clinical medicineIntervention (counseling)Humans030212 general & internal medicineBurnout Professionalmedia_common030503 health policy & servicesHealth PolicyPublic Health Environmental and Occupational HealthPoliceCompassion fatigueQuality of LifeCompassion FatigueEmpathy0305 other medical sciencePsychologyMindfulnessSocial Sciences (miscellaneous)Clinical psychologyHealth & Social Care in the Community
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Physical Workload Analysis in Processing Operations: Metal Processing Manufacturing

2019

The aim of this study is to perform physical workload analysis in metal processing industry operations (assembly operators, packaging operators and inspection staff) using objective ergonomics research methods based on the heart rate monitoring and muscle fatigue. The study was carried out in a medium sized metal manufacturing enterprise in Latvia in the department of manufacturing of ironing boards. Assembly, packaging operators and inspection staff agreed to take part in the objective heart rate monitoring and muscle myotonometry measurements. Results show that workers are at high risk of developing WMSDs, since they are subjected to heavy manual work and load on muscles during work. Acco…

Muscle fatigueWork (electrical)Computer scienceHeart rate monitoringWorkloadHeart rate analysisManufacturing engineering
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