Search results for "Turing"

showing 10 items of 2644 documents

Efficient pulsed 946-nm laser emission from Nd:YAG pumped by a titanium-doped sapphire laser

2008

Efficient pulsed room-temperature laser emission at 946 nm is obtained from a Nd:YAG rod pumped by a Ti-doped sapphire laser in the free-running mode. Three bonded YAG rods of 3-mm diameter with different Nd concentrations and active lengths were tested. A maximum output energy of 83.5 mJ at 3 Hz was obtained with a slope efficiency of 32.3% in an end-pumping configuration.

Materials sciencebusiness.industryMaterials Science (miscellaneous)Far-infrared laserSlope efficiencyTi:sapphire laserLaser pumpingLaserQ-switchingIndustrial and Manufacturing Engineeringlaw.inventionX-ray laserOpticslawDiode-pumped solid-state laserOptoelectronicsBusiness and International ManagementbusinessApplied Optics
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Damage accumulation under variable amplitude loading of welded medium- and high-strength steels

2004

Abstract The paper presents the calculation of cumulative damage for two types of welded joints (butt weld and transverse stiffeners) of four steels (medium to high strength): S355N, S355M, S690Q and S960Q. This calculation is based on experimental data obtained under axial loading and bending with constant and variable amplitudes (Gaussian distribution and Gauss with overload spectrum). The experiments were performed under fully reversed ( R =−1) and pulsating ( R =0) loading. The fatigue life is calculated using the modifications of the Palmgren–Miner–Original rule, according to the Palmgren–Miner–Elementary method, as well as to Haibach’s suggestion. The fatigue life does not depend on t…

Materials sciencebusiness.industryMechanical EngineeringButt weldingWeldingBendingStructural engineeringFatigue limitIndustrial and Manufacturing Engineeringlaw.inventionTransverse planeAmplitudeMechanics of MaterialslawResidual stressModeling and SimulationUltimate tensile strengthGeneral Materials Sciencebusiness
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An Investigation of the Thermal Effects in Orthogonal Cutting Associated with Multilayer Coatings

2001

Abstract This paper deals with an experimental and analytical investigation into the tool-chip interface behaviour, influencing the temperature and heat transfer at the multilayered coated-tool rake face during orthogonal cutting of carbon and stainless steels. New methodology for assessing the amount of thermal energy generated when machining with a coated tool insert with natural and restricted contact coupled with a metallic chip, using thermophysical properties of the sliding materials is developed in this study. It was proven, based on the heat flux analysis, that the use of advanced coatings with an intermediate Al 2 O 3 layer can substantially improve the heat flow into the chip at d…

Materials sciencebusiness.industryMechanical EngineeringMetallurgyHeat sinkChipIndustrial and Manufacturing EngineeringMachiningHeat fluxThermalHeat transferComposite materialbusinessLayer (electronics)Thermal energyCIRP Annals
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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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Assessment of multiaxial fatigue behaviour of welded joints under combined bending and torsion by application of a fictitious notch radius

2004

Abstract A major problem in the assessment of the multiaxial fatigue behaviour in welded joints is the determination of local notch stresses, since the real local radii in most cases are not known. This can be circumvented by introducing a fictitious notch radius, according to Neuber and Radaj. The calculations of local equivalent stress amplitudes for welded joints (tube–tube and flange–tube) under pure bending, pure torsion and combined in- and out-of-phase bending with torsion can then be carried out by stress-based and strain energy density-based criteria. Among the investigated methods, the most reliable results are obtained with the effective equivalent stress hypothesis, an integral …

Materials sciencebusiness.industryMechanical EngineeringTorsion (mechanics)Strain energy density functionStructural engineeringWeldingIndustrial and Manufacturing Engineeringlaw.inventionStrain energyEquivalent stressAmplitudeNotch radiusMechanics of MaterialslawModeling and SimulationPure bendingGeneral Materials SciencebusinessInternational Journal of Fatigue
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Residual stresses in friction stir welded parts of complex geometry

2011

Residual stresses play a key role on the mechanics underlying the fatigue crack growth propagation of welded joints. Indeed, compressive residual stresses may induce a beneficial enhancement of the fatigue life under loading condition whereas tensile residual stresses may act to increase the stress distribution at crack tip, resulting in a life-threatening condition of the welded structure. In-process distortion and final geometry of welded joints are also affected by residual stresses. In this paper, the longitudinal residual stress distributions in friction stir welding (FSW) joints were investigated for butt and skin–stringer geometries, including lap and T configurations. To measure res…

Materials sciencebusiness.industryMechanical Engineeringtechnology industry and agricultureWeldingStructural engineeringrespiratory systemParis' lawIndustrial and Manufacturing EngineeringFinite element methodComputer Science Applicationslaw.inventionControl and Systems EngineeringlawResidual stressUltimate tensile strengthButt jointWater coolingFriction stir weldingFriction stir welding Butt/lap/T Residual stressbusinessFSW residual stressesSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneSoftwareThe International Journal of Advanced Manufacturing Technology
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Study of upconversion in highly Er-doped photonic crystal fibers through laser-transient dynamics

2014

The dynamic response after pump switch-on of a 980 nm pumped-ring laser based on an active photonic crystal fiber with an Er3+ ion concentration of ≈1020 ions cm−3 was registered. Then a numerical fitting procedure of a theoretical model was followed to the experimental values of the relaxation oscillation parameters as a function of the input pump power. Non-radiative energy-transfer mechanisms’ coefficients: homogeneous upconversion coefficient (Cup) and critical radii for upconversion (Ru) and migration (Rm) were determined. The calculated best-fit coefficients (Cup = 1.3  ×  10−24 m3 s−1, Ru = 9  ×  10−10 m, Rm = 13  ×  10−10 m) were compared to those obtained with other steady-state an…

Materials sciencebusiness.industryOscillationDopingPhysics::OpticsCondensed Matter PhysicsLaserMolecular physicsIndustrial and Manufacturing EngineeringAtomic and Molecular Physics and OpticsPhoton upconversionlaw.inventionIonOpticslawRelaxation (physics)Transient (oscillation)businessInstrumentationPhotonic-crystal fiberLaser Physics
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A critical plane approach based on energy concepts: application to biaxial random tension-compression high-cycle fatigue regime

1999

Abstract In this paper the energy parameter, defined for random loadings, is analysed. Under uniaxial loading this parameter distinguishes between the strain energy density for tension (positive) and the strain energy density for compression (negative). As a consequence, if there is no mean component in the random loading, we obtain a random history of strain (elastic and plastic) energy density with zero expected value. Under multiaxial loadings the normal strain energy density in the critical plane (i.e. the plane of the maximum damage) is understood as the energy parameter. The history of strain energy density is schematized with use of the rain-flow algorithm. Fatigue damage is accumula…

Materials sciencebusiness.industryPlane (geometry)Tension (physics)Mechanical EngineeringBiaxial tensile testStrain energy density functionStructural engineeringMechanicsExpected valueCompression (physics)Industrial and Manufacturing EngineeringStrain energyMechanics of MaterialsModeling and SimulationGeneral Materials SciencebusinessVibration fatigueInternational Journal of Fatigue
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ΔJ-integral range estimation for fatigue crack growth rate description

2004

Abstract The paper presents an equation for fatigue crack growth rate description taking into account the ΔJ-integral range, which was verified experimentally for variable bending. Plane, notched specimens were tested under unilaterally restrained bending for different values of stress ratio R. The results of tests and numerical calculations were presented as characteristics of fatigue crack growth rate. It has been shown that in the case of a change of stress ratio from R=−1.0 to R=0.0, the crack rate increases twice for 10HNAP steel and five times for 18G2A steel. The empirical formula presented in the paper describes well the test results of fatigue crack rate in the steels.

Materials sciencebusiness.industryStress ratioPlane (geometry)Mechanical EngineeringBendingStructural engineeringMechanicsParis' lawCrack growth resistance curveIndustrial and Manufacturing EngineeringCrack closureMechanics of MaterialsModeling and SimulationEmpirical formulaRange (statistics)General Materials SciencebusinessInternational Journal of Fatigue
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A new fixture for FSW processes of titanium alloys

2010

FSW of titanium alloys is nowadays one of the most challenging welding operations, even with a solid state process, due to the thermo-mechanical and thermo-chemical characteristics of such materials. Due to the relevant application of titanium alloys in the aeronautic and aerospace industries, in the recent years few attempts were carried out to develop FSW processes aimed to maximize the mechanical performances of the welded parts. In the paper a new fixture is presented allowing obtaining effective FSW joints of titanium blanks, which were investigated through mechanical and metallurgical tests highlighting the peculiarities of FSW of titanium alloys.

Materials sciencebusiness.industryWelding aluminium alloys FSW FEMMechanical EngineeringMetallurgySolid-statechemistry.chemical_elementTitanium alloyWeldingFixtureIndustrial and Manufacturing Engineeringlaw.inventionchemistrylawAerospacebusinessSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneTitaniumCIRP Annals
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