Search results for "Shear force"

showing 10 items of 27 documents

Optimized tableting for extremely oxygen-sensitive probiotics using direct compression

2018

International audience; Faecalibacterium prausnitzii was previously recognized for its intestinal anti-inflammatory activities and it has been shown less abundant in patients with chronic intestinal diseases. However, the main problems encountered in the use of this interesting anaerobic microorganism are firstly its high sensitivity to the oxygen and secondly, its ability to reach the large intestine alive as targeted site. The aim of this study was to investigate the effect of direct compression on the viability of this probiotic strain after different compression pressure and storage using three different excipients (MCC, HPMC and HPMCP). The effect of compression process on cell viabili…

0301 basic medicineTime FactorsCell SurvivalChemistry PharmaceuticalDrug Compounding[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionShear forceDirect compressionPharmaceutical ScienceFaecalibacterium prausnitziiStorage030226 pharmacology & pharmacylaw.inventionExcipients03 medical and health sciencesProbioticTableting0302 clinical medicinelaw[SDV.IDA]Life Sciences [q-bio]/Food engineeringPressureRelative humidity[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringViability assayFood scienceF. prausnitziibiologyFaecalibacterium prausnitziiChemistryProbioticsTemperature[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringHumidityCompression (physics)biology.organism_classificationOxygen030104 developmental biologyViabilityAnaerobic exercise[SDV.AEN]Life Sciences [q-bio]/Food and NutritionPre-consolidationTablets
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Importance of Patella, Quadriceps Forces, and Depthwise Cartilage Structure on Knee Joint Motion and Cartilage Response During Gait

2015

In finite-element (FE) models of the knee joint, patella is often omitted. We investigated the importance of patella and quadriceps forces on the knee joint motion by creating an FE model of the subject's knee. In addition, depthwise strains and stresses in patellar cartilage with different tissue properties were determined. An FE model was created from subject's magnetic resonance images. Knee rotations, moments, and translational forces during gait were recorded in a motion laboratory and used as an input for the model. Three material models were implemented into the patellar cartilage: (1) homogeneous model, (2) inhomogeneous (arcadelike fibrils), and (3) random fibrils at the superficia…

AdultCartilage ArticularMalemusculoskeletal diseasesquadricepsMaterials science0206 medical engineeringShear forceBiomedical Engineering02 engineering and technologyOsteoarthritisKnee Jointmedicine.disease_causegaitModels BiologicalQuadriceps MuscleWeight-bearingWeight-Bearingknee joint03 medical and health sciences0302 clinical medicineTensile StrengthPhysiology (medical)Collagen networkfinite-element modelsmedicineHumansComputer SimulationRange of Motion Articularta315Orthodonticsta114Cartilage030229 sport sciencesmusculoskeletal systemmedicine.disease020601 biomedical engineeringmedicine.anatomical_structurepatellaPatellaStress MechanicalRange of motionhuman activitiesMuscle ContractionJournal of Biomechanical Engineering
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Muscle loading and activation of the shoulder joint during humeral external rotation by pulley and variable resistance.

2010

The aim of the study was to evaluate differences in the loading of glenohumeral joint muscles between a cable pulley machine (CP) and variable resistance machine (VR) during axial humeral external rotation.Eleven healthy male subjects took part in the study. Intramuscular electromyography from five muscles of the shoulder (medial deltoid, supraspinatus, infraspinatus and upper part of the trapezius), torque and power output was measured at different rotation angles and with different loads (10%, 50% and 100% of 1RM). Also the compressive and shear force in the glenohumeral joint was analyzed at the horizontal level at angles of rotation. External rotation was performed with a self-selected …

AdultMalebusiness.product_categoryRotationMovementShear forceDeltoid curveBiophysicsNeuroscience (miscellaneous)RotationPulleymedicineHumansHumerusRange of Motion ArticularMuscle SkeletalAngle of rotationOrthodonticsbusiness.industryShoulder JointResistance TrainingAnatomyHumerusmedicine.anatomical_structureShoulder jointNeurology (clinical)businessRange of motionMuscle ContractionJournal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology
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Stirring effects in amyloid fibril formation

2014

Amyloid Shear force Spectroscopy
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Towards the origin of the shear force in near-field microscopy

2001

The shear force from a gold or a graphite sample acting on an approaching near-field optical probe is studied in detail. The adiabatic and dissipative contributions to the force are clearly distinguished by monitoring the amplitude as well as the phase of the tip vibration when the tip approaches the surfaces. We also take into account that not only the damping and the resonance frequency but also the mass of the system changes when the tip approaches the surface. The relative strength of the contributions to the force varies differently but characteristically with the distance of the two samples, starting at a much larger distance in the case of graphite. The adiabatic contribution is lar…

Condensed matter physicsbusiness.industryChemistryElectrostatic force microscopeShear forceGeneral EngineeringGeneral Physics and AstronomyAtomic force acoustic microscopyConductive atomic force microscopyOpticsAmplitudeNear-field scanning optical microscopeAdiabatic processbusinessNon-contact atomic force microscopy
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Bending-Shear interaction domains for externally prestressed concrete girders

2013

In prestressed concrete structures, the evaluation of the safety level is generally carried out by separating the bending moment strength and the shear force capacity. Actually interaction between bending moment (M) and shear force (V) can have significant consequences on evaluations in service life, especially when the ultimate limit state (ULS) is considered. In this paper, the M-V interaction is addressed for prestressed concrete girders, in the cases of both bonded and unbonded prestressing tendons. It can be demonstrated, by drawing the interaction domains (M-V), that a significant reduction of the safety level has to be considered when shear force is evaluated together with bending mo…

EngineeringArticle SubjectShear forcebending moment-shear interaction; limit state; strength domain; external prestressing; box girderexternal prestressingshearlimit statelaw.inventionPrestressed concretelawGirderInteraction domains; bending; shear; prestressingLimit state designGeotechnical engineeringShear and moment diagramCivil and Structural Engineeringstrength domainbusiness.industrybox girderStructural engineeringbendingStress fieldSettore ICAR/09 - Tecnica Delle CostruzioniShear (geology)lcsh:TA1-2040Bending momentprestressingInteraction domainlcsh:Engineering (General). Civil engineering (General)businessbending moment-shear interaction
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Serviceability and Ultimate Safety Checks of SegmentalConcrete Bridges through N-M and M-V Interaction Domains

2015

In current engineering practice, safety checks on serviceability and determinations of ultimate limit states of segmental bridges built by cantilevering are generally performed, either considering separately the contributions of axial force N, bending moment M, and shear force V, or considering the interaction effects through approximate expressions supplied by building codes. During construction stages and service life, the interaction between internal forces can be of fundamental importance in establishing the actual degree of structural safety and, for this reason, a different philosophy for performing checks in segmental bridges is proposed in this paper, plotting N-M and M-V interactio…

EngineeringCantileverServiceability (structure)BendingPrestressingbusiness.industryShear forceShearBuilding and ConstructionStructural engineeringCantileverCreepCantilever Segmental bridge Creep; Bending Shear Prestressing Interaction domainsCrackingSettore ICAR/09 - Tecnica Delle CostruzioniCreepInteraction domainsSegmental bridgeService lifeBending momentCantilever Segmental bridge Creep Bending Shear Prestressing Interaction domainsAxial forcebusinessCivil and Structural Engineering
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Prediction of the additional shear action on frame members due to infills

2014

Infill masonry walls in framed structures make a significant contribution to the response under seismic actions. With special regard to reinforced concrete (RC) structures, it is known that internal forces modifications caused by the frame–infill interaction may be not supported by the surrounding frame because of the additional shear forces arising at the ends of beams and columns. Such additional forces may lead to the activation of brittle collapse mechanisms and hence their prediction is basic in capacity assessment, especially for structures that disregard the details for seismic zones. In this paper a parametric study is carried out addressed to the prediction of the shear forces ment…

EngineeringInfilled framesMasonry infillsbusiness.industryInfilled frames; Masonry infills; Local shear effects; Micromodel; Equivalent strut.Shear forceBuilding and ConstructionStructural engineeringMasonryConcentricGeotechnical Engineering and Engineering GeologyInfilled framesSettore ICAR/09 - Tecnica Delle CostruzioniMicromodelGeophysicsBrittlenessShear (geology)InfillEquivalent strutGeotechnical engineeringInfilled frames · Masonry infills · Local shear effects · Micromodel · Equivalent strutbusinessLocal shear effectsCivil and Structural EngineeringParametric statisticsBulletin of Earthquake Engineering
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Design of RC joints equipped with hybrid trussed beams and friction dampers

2021

Abstract The challenge of this research consists in the first attempt to apply a dissipative friction connection to beam-to-column joints with semi-prefabricated Hybrid Steel-Trussed Concrete Beams (HSTCB) and RC pillars cast in-situ. Nowadays, HSTCBs are widely adopted in civil and industrial buildings and, therefore, it is required to evaluate their compliance with the capacity design criteria and their seismic energy dissipation capability. However, the design of the reinforcement of such beams usually lead to the adoption of large amount of steel within the panel zone which becomes potentially vulnerable to the effects of seismic cyclic actions and dramatically reduce the dissipation ca…

Finite element modelsComputer scienceShear force0211 other engineering and technologies020101 civil engineering02 engineering and technologyRC jointsSeismic energy dissipation0201 civil engineeringDamper021105 building & constructionmedicineTorqueCivil and Structural Engineeringbusiness.industryFriction dampersStiffnessStructural engineeringDissipationFinite element methodSettore ICAR/09 - Tecnica Delle CostruzioniCyclic behaviour; Earthquake design; Finite element models; Friction dampers; Hybrid steel-trussed-concrete beams; RC joints; Seismic energy dissipation; Structural designHybrid steel-trussed-concrete beamsStructural designBending momentCyclic behaviourEarthquake designmedicine.symptombusinessBeam (structure)Engineering Structures
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Magnitude and distribution of stresses in composite resin and sound dentine interface with mechanical retentions

2014

Background: Adhesive systems are constantly subjected to mechanical and chemical stresses that negatively impact the integrity and durability of the dentine-adhesive interface. Despite the lack of evidence to support or reject the clinical indication for mechanical retention, the potential further contribution of these preparations to the behavior of the composite resin-sound dentine bond has been rarely addressed. The authors evaluated by finite element analysis the effect of mechanical retention on the magnitude and distribution of stresses in a composite resin-sound dentin bonding interface when subjected to tensile and shear forces. Material and Methods: A three-dimensional model was cr…

Materials scienceResearchShear forceComposite numberOdontología:CIENCIAS MÉDICAS [UNESCO]DurabilityCiencias de la saludFinite element methodRESINAS COMPOSTASmedicine.anatomical_structurestomatognathic systemBiomaterials and Bioengineering in DentistryUNESCO::CIENCIAS MÉDICASUltimate tensile strengthDentinmedicinevon Mises yield criterionAdhesiveComposite materialGeneral Dentistry
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