Search results for "Damage mechanic"

showing 10 items of 40 documents

Jellyfish Stings Trigger Gill Disorders and Increased Mortality in Farmed Sparus aurata (Linnaeus, 1758) in the Mediterranean Sea

2016

11 pages, 4 figures

Gills0106 biological sciences0301 basic medicineGillFish mortalityFish DiseaseJellyfishScyphozoaRespiratory SystemMarine and Aquatic Scienceslcsh:MedicineAquaculture01 natural sciencesCell FusionBites and StingFish DiseasesAquacultureOceansMedicine and Health SciencesMarine FishBites and StingsAnimal Anatomylcsh:ScienceMultidisciplinarybiologyPhysicsFishesClassical MechanicsAgricultureSurvival RateVertebratesPhysical SciencesAnatomyAnimals Aquaculture Bites and Stings Fish Diseases Gills Mediterranean Sea Scyphozoa Sea Bream Survival Rate TunisiaResearch ArticleSettore BIO/07 - EcologiaCell PhysiologyTunisiaFish BiologyFish farmingMarine BiologyCnidaria03 medical and health sciencesFish physiologyBodies of waterbiology.animalFish PhysiologyMediterranean SeaAnimalsAnimal Physiology14. Life underwaterDamage MechanicsAnimalbusiness.industry010604 marine biology & hydrobiologylcsh:ROrganismsBiology and Life SciencesCell BiologyScyphozoabiology.organism_classificationPelagia noctilucaInvertebratesVertebrate PhysiologySea BreamFishery030104 developmental biologyAquatic Respiratory Anatomy13. Climate actionEarth SciencesGilllcsh:QJellyfishbusinessZoologyPLOS ONE
researchProduct

Tensile Failure of Bio-inspired Lattices with Different Base Topologies

2022

In the last decades the use of cellular materials, either in the form of foams or lattices, has widely spread in engineering due to their specific properties, namely their high mechanical and multifunctional properties in terms of strength, stiffness, energy absorption, thermal and acoustic insulation at small weight compared to bulk materials. These features can be achieved, in the case of lattices, by designing their structure at different scales, both in two and three dimensions. Additionally, nowadays, complex desired geometries may be easily obtained thanks to consolidated and even recent technologies of production, especially Additive Manufacturing (AM) techniques. The aim of the pres…

Lattice materialComputational MechanicsFracture and damage mechanicSettore ING-IND/04 - Costruzioni E Strutture Aerospaziali
researchProduct

Influence of competition on performance factors in under-19 soccer players at national league level.

2020

The aim of this study was to analyse and quantify the acute effects of competition on several performance factors in under-19 male soccer players. To this end, 198 national league players (17.56 ± 0.78 years) performed various tests to measure jump capacity, kicking velocity and sprint times immediately pre-match (T1), at half-time (T2) and post-match (T3). Tests included kicking the ball to measure ball velocity (KICK), sprinting for 40 meters, timing the first 30 meters (30mACCEL), the last 10 meters (10mACCEL) and the total distance (40mACCEL), and performing countermovement jumps (CMJ). For subsequent analysis, the sample was divided into 5 playing positions: goalkeepers (n = 24), defen…

MaleBall velocityAcute effectsPhysiologyVelocitySocial Sciences030204 cardiovascular system & hematologyPathology and Laboratory MedicineMaterial FatigueRunningRemote SensingMaterial fatigue0302 clinical medicineMaterials PhysicsTask Performance and AnalysisStatisticsMedicine and Health SciencesHuman PerformancePsychologyFatigueMathematicsMultidisciplinaryPhysicsQRClassical MechanicsSports ScienceSprintPhysical SciencesJumpEngineering and TechnologyMedicineResearch ArticleSportsCompetitive BehaviorAdolescentScienceAccelerationMaterials ScienceAthletic PerformanceLeagueMotion03 medical and health sciencesSigns and SymptomsCountermovementDiagnostic MedicineSoccerHumansExerciseBehaviorDamage MechanicsRadarBiological LocomotionBiology and Life Sciences030229 sport sciencesRecreationPLoS ONE
researchProduct

Composing only by thought: Novel application of the P300 brain-computer interface.

2017

The P300 event-related potential is a well-known pattern in the electroencephalogram (EEG). This kind of brain signal is used for many different brain-computer interface (BCI) applications, e.g., spellers, environmental controllers, web browsers, or for painting. In recent times, BCI systems are mature enough to leave the laboratories to be used by the end-users, namely severely disabled people. Therefore, new challenges arise and the systems should be implemented and evaluated according to user-centered design (USD) guidelines. We developed and implemented a new system that utilizes the P300 pattern to compose music. Our Brain Composing system consists of three parts: the EEG acquisition d…

MaleMan-Computer InterfaceVisual Analog ScaleComputer sciencePhysiologyInterface (computing)lcsh:MedicineSocial Sciences02 engineering and technologyMusicalMaterial FatigueTask (project management)Thinking0302 clinical medicineSoftwareHuman–computer interactionMaterials PhysicsSoftware DesignSurveys and QuestionnairesTask Performance and AnalysisMedicine and Health SciencesPsychologylcsh:ScienceClinical NeurophysiologyBrain MappingMultidisciplinaryMusic psychologyPhysicsClassical MechanicsSoftware EngineeringElectroencephalographyElectrophysiologyBioassays and Physiological AnalysisBrain ElectrophysiologyResearch DesignBrain-Computer InterfacesPhysical SciencesSoftware designEngineering and TechnologyFemaleResearch ArticleAdultComputer and Information SciencesImaging Techniques0206 medical engineeringMaterials ScienceNeurophysiologyNeuroimagingResearch and Analysis MethodsComputer Software03 medical and health sciencesHumansBrain–computer interfaceBehaviorDamage MechanicsMusic Cognitionbusiness.industrySIGNAL (programming language)lcsh:RElectrophysiological TechniquesCognitive PsychologyBiology and Life SciencesPilot StudiesAcoustics020601 biomedical engineeringEvent-Related Potentials P300Human Factors EngineeringCognitive Sciencelcsh:QClinical MedicinebusinessBioacoustics030217 neurology & neurosurgeryNeurosciencePloS one
researchProduct

Comparison of post-activation performance enhancement (PAPE) after isometric and isotonic exercise on vertical jump performance.

2021

Purpose This study aimed to compare the post-activation performance enhancement (PAPE) induced by isometric and isotonic exercise on vertical jump performance. Methods 18 healthy trained men (25.8±2.7 years; 78.4±8.2 kg; 175.7±6.1 cm; 25.4±1.8 BMI; 126.72±10.8 kg squat 1-RM) volunteered for this study. They randomly performed two different PAPE protocols: Isotonic squats (ISOTS), which consisted of 2 sets of 3 repetitions at 75% of one-maximum repetition (1-RM); and isometric squats (ISOMS), which consisted of 2 sets of 4 seconds of submaximal (75% of 1-RM) isometric contraction at 90°-knee flexion. Countermovement jump (CMJ) height was tested at baseline and 4 minutes after each condition…

MaleMuscle PhysiologyPhysiologyKneesIsometric exerciseMaterial FatigueRunningJumpingSkeletal JointsMaterials PhysicsIsotonicMedicine and Health SciencesPublic and Occupational HealthMusculoskeletal SystemMathematicsCross-Over StudiesMultidisciplinaryPhysicsIsotonicQRClassical MechanicsSports SciencePhysical SciencesStrength TrainingLegsMedicineAnatomyPerformance enhancementResearch ArticleMuscle ContractionAdultmedicine.medical_specialtySciencePostureMaterials ScienceSquatAthletic PerformanceVertical jumpPhysical medicine and rehabilitationOsmotic PressureIsometric ContractionPressuremedicineHumansTonicityIsotonic ContractionMuscle StrengthSports and Exercise MedicineMuscle SkeletalExerciseSkeletonDamage MechanicsBiological LocomotionBiology and Life SciencesPhysical ActivityAthletesPhysical FitnessBody LimbsCountermovement jumpPLoS ONE
researchProduct

Blood-Borne Markers of Fatigue in Competitive Athletes – Results from Simulated Training Camps

2016

Assessing current fatigue of athletes to fine-tune training prescriptions is a critical task in competitive sports. Blood-borne surrogate markers are widely used despite the scarcity of validation trials with representative subjects and interventions. Moreover, differences between training modes and disciplines (e.g. due to differences in eccentric force production or calorie turnover) have rarely been studied within a consistent design. Therefore, we investigated blood-borne fatigue markers during and after discipline-specific simulated training camps. A comprehensive panel of blood-born indicators was measured in 73 competitive athletes (28 cyclists, 22 team sports, 23 strength) at 3 time…

MaleTeam sportPhysiologylcsh:MedicinePathology and Laboratory MedicineMaterial FatigueInterval training0302 clinical medicineMaterials PhysicsMedicine and Health SciencesHuman PerformanceUreaMedicineEccentricPublic and Occupational Healthlcsh:ScienceFatigueMultidisciplinarybiologyOrganic CompoundsPhysicsClassical MechanicsHematologyVenous bloodSports ScienceBody FluidsChemistryBloodPhysical SciencesStrength TrainingFemaleAnatomyStatistics (Mathematics)Research ArticleSportsmedicine.medical_specialtyStrength trainingMaterials Science03 medical and health sciencesSigns and SymptomsAnimal scienceConfidence IntervalsHumansSports and Exercise MedicineExerciseDamage MechanicsBehaviorbusiness.industryAthletesOrganic Chemistrylcsh:RChemical CompoundsBiology and Life Sciences030229 sport sciencesbiology.organism_classificationConfidence intervalPhysical FitnessAthletesbiology.proteinPhysical therapyRecreationlcsh:QCreatine kinasebusinessMathematicsBiomarkers030217 neurology & neurosurgeryPLOS ONE
researchProduct

Muscle Activity Adaptations to Spinal Tissue Creep in the Presence of Muscle Fatigue.

2016

Aim The aim of this study was to identify adaptations in muscle activity distribution to spinal tissue creep in presence of muscle fatigue. Methods Twenty-three healthy participants performed a fatigue task before and after 30 minutes of passive spinal tissue deformation in flexion. Right and left erector spinae activity was recorded using large-arrays surface electromyography (EMG). To characterize muscle activity distribution, dispersion was used. During the fatigue task, EMG amplitude root mean square (RMS), median frequency and dispersion in x- and y-axis were compared before and after spinal creep. Results Important fatigue-related changes in EMG median frequency were observed during m…

Malemyalgialcsh:MedicineElectromyographyPathology and Laboratory MedicineMaterial Fatigue0302 clinical medicineMaterials PhysicsMedicine and Health SciencesRange of Motion Articularlcsh:ScienceMusculoskeletal SystemFatigueMultidisciplinarymedicine.diagnostic_testPhysicsClassical MechanicsAnatomyDeformationBioassays and Physiological Analysismedicine.anatomical_structureCreepMuscle FatiguePhysical SciencesMetallurgyCardiologyFemaleAnatomymedicine.symptomRange of motionAlgorithmsMuscle ElectrophysiologyMuscle ContractionResearch ArticleMuscle contractionAdultMetal FatigueMuscle tissuemedicine.medical_specialtyMaterials sciencePostureMaterials ScienceMuscle TissueResearch and Analysis MethodsYoung Adult03 medical and health sciencesSigns and SymptomsInternal medicinemedicineHumansPain ManagementMuscle SkeletalElectrodesMuscle contractureBackDamage MechanicsMuscle fatigueElectromyographyElectrophysiological Techniqueslcsh:RBiology and Life SciencesMyalgia030229 sport sciencesSpineBiological Tissuelcsh:Q030217 neurology & neurosurgeryPLoS ONE
researchProduct

Impact behaviour of flax/epoxy composite plates

2015

This paper presents an experimental investigation of the impact behaviour of flax/epoxy composite plates submitted to low-velocity transverse impact. Low energy drop-weight impact tests have been performed on two types of quasi-isotropic flax/epoxy composites, rectangularly shaped with edges lengths of 142 mm × 94 mm and 2.85 mm thick. Residual properties have been assessed by compression after impact tests. A detailed description of damage development, especially the increase of the rear face crack with respect to the impact energy is given by the microscopic observation. The influence of impact damage on the residual strength is described. A loss of 15%–30% in compression resistance was n…

Materials scienceComposite numberDamage toleranceAerospace EngineeringOcean EngineeringBendingDamage mechanicsDamage mechanicsStructural compositesMécanique: Mécanique des matériaux [Sciences de l'ingénieur]Composite materialSafety Risk Reliability and QualityImpact behaviourCivil and Structural EngineeringMécanique [Sciences de l'ingénieur]Mechanical EngineeringEpoxyCompression (physics)Flax fibreResidual strengthTransverse planeMechanics of Materialsvisual_artAutomotive Engineeringvisual_art.visual_art_mediumDamage toleranceInternational Journal of Impact Engineering
researchProduct

From fracture to damage mechanics: a behavior law for microcracked composites using the concept of crack opening mode

2010

International audience; Many studies have been carried out in order to build a coherent macroscopic behavior law for a composite containing microcracks. All of them are only partially coherent and none of them is complete. This study proposes a hyperelastic behavior law for a microcracked composite, respecting all the conditions associated with the damage activation/deactivation, stress/strain relation continuity, induced anisotropy and the Clausius–Duhem inequality. This approach is based on the definition of the Crack Opening Mode for Damage Mechanics as it exists in Fracture Mechanics.

Materials scienceComposite number[ PHYS.COND.CM-MS ] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]02 engineering and technologyClausius–Duhem inequalityCrack Opening ModeStress (mechanics)0203 mechanical engineeringDamage mechanicsUnilateral effect of damageDamage mechanicsmedicineHyperelastic behaviorComposite materialCivil and Structural EngineeringFissureMicrocracksFracture mechanics021001 nanoscience & nanotechnology020303 mechanical engineering & transportsmedicine.anatomical_structureLawHyperelastic material[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Ceramics and CompositesFracture (geology)0210 nano-technology
researchProduct

Prediction of Ductile Fractures in Metal-Forming Processes: an Approach Based on the Damage Mechanics

1994

The Authors propose a new approach for the prediction of ductile fractures in bulk metal forming processes: the approach is based on a numerical analysis able to take into account damage occurrence and evolution in constitutive equations. The model supplies the distribution of the void volume fraction in the workpiece during the deformation path: consequently, the comparison to a critical value, determined by means of a simple tension test, allows to predict the growth of defects. The proposed approach has been applied to the drawing process: the numerical results have been compared with a set of experimental tests showing a good predictive capability of the model.

Materials scienceComputer simulationbusiness.industryMechanical EngineeringNumerical analysisConstitutive equationStructural engineeringCritical valueIndustrial and Manufacturing EngineeringForgingDamage mechanicsDeformation (engineering)businessTensile testingCIRP Annals
researchProduct