Search results for "deflection [cosmic radiation]"

showing 8 items of 18 documents

Gas-filled recoil separator for studies of heavy elements

1995

Abstract A gas-filled recoil separator for the study of heavy elements has been constructed. The separator is of type QDQQ with the first, vertically focusing, quadrupole providing improved matching to the acceptance of the dipole magnet. The separator has been designed also for use in vacuum mode in which case a mass resolving power of ≈ 100 is estimated. The deflection angle is 25° and the radius of curvature is 1850 mm. Maximum beam rigidity is 2.2 T m. In the first experiments, new isotopes in the region Z = 85–90 have been synthesized.

Nuclear and High Energy Physics010308 nuclear & particles physicsChemistrySeparator (oil production)01 natural sciences7. Clean energyRecoil separatorDeflection angleNuclear physicsRigidity (electromagnetism)Dipole magnet0103 physical sciencesQuadrupole010306 general physicsInstrumentationNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Electrooptic beam deflection with latex

1988

The use of latex in electrooptic devices is proposed. The static non linearity coefficient is shown to be approximatively 200 times the optical one. The theory of a beam deflector is developed and an explicit expression is given for the deflection angle versus the physical parameters of the sample Utilisation de suspensions aqueuses de latex dans un dispositif electro-optique. On montre que le coefficient statique de non-linearite devrait etre 200 fois plus eleve que le coefficient optique. Application a un deflecteur optique

Physics::Optics02 engineering and technology01 natural sciencesDeflection angle010309 opticsOptics0103 physical scienceselectro optical effectsChemistrybusiness.industrylatexNon linearityNonlinear opticsdeflection angleParticle suspension021001 nanoscience & nanotechnologyelectrooptic devicesphysical parameterssample[PHYS.HIST]Physics [physics]/Physics archivesPhysics::Accelerator Physicsstatic nonlinearity coefficientelectrooptic beam deflection0210 nano-technologybusinessBeam (structure)electro optical devices
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Comportamento flessionale di nodi esterni in calcestruzzo fibrorinforzato

2010

A softened strut-and-tie macro model able to reproduce the flexural behavior of external beam-tocolumn joints with the presence of horizontal and vertical steel bars, including softening of compressed struts and yielding of main and secondary steel bars, is presented, to be used for the pushover analysis. The model proposed is able to calculate also the flexural response of fibrous reinforced concrete (FRC) beam-to-column sub-assemblages in term of a multilinear load-deflection curves. The model is able to take into account of the tensile behavior of main bars embedded in the surrounding concrete and of the softening of the compressed strut, the arrangement and percentage of the steel bars,…

Settore ICAR/09 - Tecnica Delle CostruzioniBeam-to column joints Fibrous reinforced concrete Load-deflection curves
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Experiments on Longitudinal and Transverse Bedload Transport in Sine-Generated Meandering Channels

2021

Bedload grains in consecutive meandering bends either move longitudinally or across the channel centerline. This study traces and quantifies the grains’ movement in two laboratorial sine-generated channels, i.e., one with deflection angle θ0 = 30° and the other 110°. The grains originally paved along the channels are uniform in size with D = 1 mm and are dyed in various colors, according to their initial location. The experiments recorded the changes in the flow patterns, bed deformation, and the gain-loss distribution of the colored grains in the pool-bar complexes. We observed the formation of two types of erosion zones during the process of the bed deformation, i.e., Zone 1 in the foresi…

Technology010504 meteorology & atmospheric sciencesQH301-705.5QC1-9990207 environmental engineeringGeometry02 engineering and technologyDeformation (meteorology)01 natural sciencesSettore ICAR/01 - IdraulicaDeflection angleGeneral Materials SciencePoint (geometry)SineBiology (General)020701 environmental engineeringInstrumentationQD1-9990105 earth and related environmental sciencesBed loadFluid Flow and Transfer Processesmeandering channelsBedloadProcess Chemistry and TechnologyTPhysicsmeandering bendGeneral Engineeringbedload transportpredictionexperimentsEngineering (General). Civil engineering (General)Computer Science ApplicationsTransverse planeChemistryErosionTA1-2040GeologyCommunication channelApplied Sciences
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Online Deflection Compensation of a Flexible Hydraulic Loader Crane Using Neural Networks and Pressure Feedback

2022

The deflection compensation of a hydraulically actuated loader crane is presented. Measurement data from the laboratory are used to design a neural network deflection estimator. Kinematic expressions are derived and used with the deflection estimator in a feedforward topology to compensate for the static deflection. A dynamic deflection compensator is implemented, using pressure feedback and an adaptive bandpass filter. Simulations are conducted to verify the performance of the control system. Experimental results showcase the effectiveness of both the static and dynamic deflection compensator while running closed-loop motion control, with a 90% decrease in static deflection.

VDP::Teknologi: 500Control and OptimizationArtificial IntelligenceMechanical EngineeringPhysics::Space Physicsdeflection compensation; kinematics; loader crane; hydraulics; neural networkRobotics
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Static Deflection Compensation of Multi-Link Flexible Manipulators Under Gravity

2022

The static deflection compensation method of a planar multi-link flexible manipulator is proposed using the feedback from inertial sensors mounted at the tip of each link. The proposed compensation technique is validated experimentally using a high-precision laser tracker. The proposed strategy is experimentally verified using a three-link flexible manipulator. A strategy to compensate for the centripetal and tangential acceleration induced on the accelerometer mounted on the rotating link is proposed for correct inclination estimation. The improvement in the inclination estimation using the proposed compensation technique is verified both in simulation and experimental studies.

VDP::Teknologi: 500General Computer ScienceoscillationsComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONFlexible arm3DoF manipulatorGeneral Engineeringelasticitydeflection compensationGeneral Materials ScienceElectrical engineering. Electronics. Nuclear engineeringTK1-9971IEEE Access
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Mechanical behaviour of Mater-Bi/wood flour composites: a statistical approach

2008

Interest in biocomposites (lignocellulosic filled biopolymers) started in the 90s, due to environmental advantages, related to the full biodegradability of both matrix and filler, economical issues (organic fillers usually come from sawmill or agriculture wastes) and aesthetical issues (wood filled biopolymers could be particularly pleasant if used for indoor furnishing and automotive interior). In this work, a method for a systematic study of the properties of Mater-Bi®/wood flour composites is presented. A two-level full factorial model was built. It allows investigating the effects of multiple operative variables on the observed properties, their contributions, their optimal combinations…

chemistry.chemical_classificationFiller (packaging)Materials sciencestatistical properties/methodelectron microscopyMixing (process engineering)polymer-matrix composites (PMCs)Izod impact strength testWood flourPolymerAspect ratio (image)Settore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryMechanics of MaterialsCeramics and CompositesHeat deflection temperaturemechanical propertieComposite materialElastic modulus
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Extension of Deflection Coefficient for Linear Fusion of Quantized Reports in Cooperative Sensing

2014

Maximizing the so-called deflection coefficient is commonly used as an effective approach to design cooperative sensing schemes with low computational complexity. In this paper, an extension to the deflection coefficient is proposed which captures the effects of the quantization processes at the sensing nodes, jointly with the impact of linear combining at the fusion center. The proposed parameter is then used to formulate a new mixed-integer nonlinear programming problem as a fast suboptimal method to design a distributed detection scenario where the nodes report their sensing outcomes to a fusion center through nonideal digital links. Numerical evaluations show that the performance of the…

deflection coefficientcooperative sensinglinear fusion
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