Search results for "Sheet metal"

showing 10 items of 141 documents

A contribution on the optimization strategies based on moving least squares approximation for sheet metal forming design

2012

Computer-aided procedures to design and optimize forming processes are, nowadays, crucial research topics since industrial interest in costs and times reduction is always increasing. Many researchers have faced this research challenge with various approaches. Response surface methods (RSM) are probably the most known approaches since they proved their effectiveness in the recent years. With a peculiar attention to sheet metal forming process design, RSM should offer the possibility to reduce the number of numerical simulations which in many cases means to reduce design times and complexity. Actually, the number of direct problems (FEM simulations) to be solved in order to reach good functio…

Mathematical optimizationEngineeringOptimization problembusiness.industryMechanical EngineeringForming processesComputer aided optimizationSheet metal formingIndustrial and Manufacturing EngineeringComputer Science ApplicationsReduction (complexity)Function approximationControl and Systems Engineeringvisual_artKey (cryptography)visual_art.visual_art_mediumZoomMoving least squaresMoving least squares methodologySheet metalbusinessSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneSoftware
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A NEW PROGRESSIVE DESIGN METHODOLOGY FOR COMPLEX SHEET METAL STAMPING OPERATIONS: COUPLING SPATIALLY DIFFERENTIATED RESTRAINING FORCES APPROACH AND M…

2010

The growing interest in sheet metal stamping processes, particularly in the automotive industry has led to three main issues in this field:*request of very complex shapes; *growing interest in springback control; *solution of multi-objective problems. These issues make a sheet metal stamping processes design very difficult and proper design methodologies to reduce times and costs are highly required. In this paper, a computer aided approach aiming to satisfy the mentioned issues is proposed. In particular, a progressive design approach based on the integration between numerical simulations, Response Surface Methodology (RSM) and Pareto optimal solutions search techniques was applied in orde…

Mathematical optimizationEngineeringbusiness.industryMechanical EngineeringPareto principleAutomotive industrymulti-objective optimisatiomrestraining forces stategyProcess designStampingSheet metal formingMulti-objective optimizationComputer Science ApplicationsspringbackModeling and SimulationDesign processGeneral Materials SciencebusinessEngineering design processDesign methodsSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneCivil and Structural Engineering
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Common defects of parts manufactured through single point incremental forming

2021

Single point incremental forming is one of the most intensely researched die-less manufacturing process. This process implies the usage of a CNC equipment or a serial robot which deforms a sheet metal with the help of a relatively simple tool that follows an imposed toolpath. As every cold metal forming process, besides the many given advantages it has also some drawbacks. One big drawback in comparison with other cold metal forming processes is the low accuracy of the deformed parts. The aim of this research is to investigate the sheet metal bending mechanism through finite element method analysis. The results shows that the shape of the retaining rings has a big influence over the final g…

Mechanism (engineering)Sheet metal bendingMetal formingSimple (abstract algebra)visual_artvisual_art.visual_art_mediumProcess (computing)RobotMechanical engineeringTA1-2040Single pointEngineering (General). Civil engineering (General)Sheet metalMATEC Web of Conferences
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Polymer solutions: Equilibrium clusters versus shear clusters

2021

Abstract Polymer solutions are inhomogeneous on mesoscopic scales as a result of chemical bonds linking their monomeric units. This situation leads to polymer clusters within which the polymer concentration c cluster is only a small fraction of the overall concentration c. The ratio c/ c cluster (overlap parameters Ω ) quantifies the number of clusters that need to overlap to yield c. Equilibrium clusters (minimization of Gibbs energy) and shear clusters (minimization of entropy production) differ fundamentally where Ω equil ≥ Ω shear . Only in the vicinity of the glass transition temperature and at high concentration the opposite is the case. Experimental information on Ω equil as a functi…

Mesoscopic physicsYield (engineering)Materials sciencePolymers and PlasticsEntropy productionOrganic ChemistryThermodynamics02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesGibbs free energyCondensed Matter::Soft Condensed MatterShear (sheet metal)symbols.namesakeVolume fractionMaterials ChemistryCluster (physics)symbols0210 nano-technologyGlass transitionPolymer
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Blends of PDMS and random copolymers of dimethylsiloxane and methylphenylsiloxane: Phase separation in the quiescent state and under shear

1999

The miscibility of random copolymers (COP), consisting of dimethylsiloxane and methylphenylsiloxane units, with poly(dimethylsiloxane)s (PDMS) was studied in the absence and in the presence of shear experimentally as well as theoretically. Blends of COP 0.86 28 with PDMS 33 (subscripts: volume fraction of DMS in the copolymer, numbers after the abbreviations: weight average molar masses in kg/mol) were investigated far from critical conditions on the PDMS side of the phase diagram. According to these experiments the two phase regime increases by shear without exception and the maximum effects grow from 3 to 12 K as the PDMS concentration increases. Theoretical calculations were performed un…

Molar massMaterials scienceYield (engineering)Polymers and PlasticsOrganic ChemistryCondensed Matter PhysicsMiscibilityShear (sheet metal)Phase (matter)Volume fractionPolymer chemistryMaterials ChemistryPhysical and Theoretical ChemistryShear flowPhase diagramMacromolecular Chemistry and Physics
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Incorporation of Silica Nanospherical Particles in Epoxy–Amine Crosslinked Materials II. Dynamic Mechanical Measurements of Epoxy Matrix-Silica Nanoc…

2009

The mechanical strengths of epoxy composites reinforced with silica nanospheres, unfunctionalised or functionalised with either amine or epoxy groups, increase up to a proportion of 5 wt.% of filler, as reflected in a study of the shear storage modulus carried out in dynamic mechanical analysis. This improvement is observed in both glassy and rubbery states, moderately affecting the glass transition temperature of the material. From this percentage of strengthening substance the mechanical properties begin to deteriorate, but keeping (up to 10 wt.% of strengthening material), a greater storage modulus in shear than that of the pristine epoxy resin. A trend can be discerned as the percentag…

NanocompositeMaterials sciencePolymers and PlasticsDynamic mechanical analysisEpoxyEpoxy matrixengineering.materialShear (sheet metal)Filler (materials)visual_artMaterials ChemistryCeramics and Compositesengineeringvisual_art.visual_art_mediumAmine gas treatingComposite materialGlass transitionPolymers and Polymer Composites
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Dynamic Mechanical Measurements of Epoxy Matrix-Silica Nanocomposites II

2009

The mechanical properties of epoxy-silica nanocomposites have been studied; the silica nanosphere fillers used were un-functionalised, functionalised with amine, with epoxy, or a mixture of both kinds. Dynamic mechanical analysis measurements revealed an increase in the shear storage modulus, for all samples with a filler content of 3–5%. Improvements were observed in the glassy and rubbery states, without affecting the glass transition temperature of the materials. Above these strengthening percentages, the mechanical properties began to deteriorate, but in all cases they remained superior to those of the pristine epoxy resin. For low strengthening percentages, samples reinforced with bot…

NanocompositeMaterials sciencePolymers and PlasticsEpoxyDynamic mechanical analysisengineering.materialFlow stressShear (sheet metal)visual_artFiller (materials)Materials ChemistryCeramics and CompositesCohesion (geology)visual_art.visual_art_mediumengineeringComposite materialGlass transitionPolymers and Polymer Composites
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Earthquake Excited Base-Isolated Structures Protected by Tuned Liquid Column Dampers: Design Approach and Experimental Verification

2017

Abstract In this contribution a direct approach for optimal design of a Tuned Liquid Column Damper (TLCD) device attached to the base slab of a base-isolated structure is presented, aiming at reducing the seismic displacement demand of the base-isolation subsystem. Assuming white noise base excitation, for a wide parameter range a direct optimization procedure yields design charts for optimal TLCD quantities. The performance of the base-isolated structure equipped with optimally tuned TLCD device in comparison to the simple base-isolated one is evaluated both numerically and experimentally. In a numerical study the system is subjected to the 44 records of the FEMA P-695 far-field ground mot…

Optimal designBase-isolationOptimal designEngineeringbusiness.industryDirect methodBase (geometry)020101 civil engineering02 engineering and technologyGeneral MedicineWhite noiseStructural engineering0201 civil engineeringDamperShear (sheet metal)020303 mechanical engineering & transports0203 mechanical engineeringRange (statistics)SlabHybrid passive controlTLCDbusinessSettore ICAR/08 - Scienza Delle Costruzioni
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Intravascular pillars and pruning in the extraembryonic vessels of chick embryos.

2010

To investigate the local mechanical forces associated with intravascular pillars and vessel pruning, we studied the conducting vessels in the extraembryonic circulation of the chick embryo. During the development days 13-17, intravascular pillars and blood flow parameters were identified using fluorescent vascular tracers and digital time-series video reconstructions. The geometry of selected vessels was confirmed by corrosion casting and scanning electron microscopy. Computational simulations of pruning vessels suggested that serial pillars form along pre-existing velocity streamlines; blood pressure demonstrated no obvious spatial relationship with the intravascular pillars. Modeling a Re…

PeriodicityExtraembryonic MembranesNeovascularization PhysiologicChick EmbryoBiologyArticleMicrocirculationsymbols.namesakeMicroscopyShear stressAnimalsStreamlines streaklines and pathlinesComputer SimulationReynolds numberEndothelial CellsBlood flowAnatomyShear (sheet metal)Regional Blood FlowsymbolsBlood Vesselssense organsStress MechanicalCorrosion CastingDevelopmental BiologyBiomedical engineeringDevelopmental dynamics : an official publication of the American Association of Anatomists
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Bayesian estimation of the specific shear and bulk viscosity of the quark-gluon plasma with additional flow harmonic observables

2021

The transport properties of the strongly coupled quark-gluon plasma created in ultrarelativistic heavy-ion collisions are extracted by Bayesian parameter estimate methods with the latest collision beam energy data from the CERN Large Hadron Collider. This Bayesian analysis includes sophisticated flow harmonic observables for the first time. We found that the temperature dependence of specific shear viscosity appears weaker than in the previous studies. The results prefer a lower value of specific bulk viscosity and a higher switching temperature to reproduce additional observables. However, the improved statistical uncertainties both on the experimental data and hydrodynamic calculations wi…

PhysicsLarge Hadron Collider010308 nuclear & particles physicsbayesilainen menetelmäkvarkki-gluoniplasmaFOS: Physical sciencesObservableVolume viscosityMechanicshiukkasfysiikkaCollision01 natural sciences114 Physical sciencesShear (sheet metal)Nonlinear systemHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Flow (mathematics)0103 physical sciencesQuark–gluon plasma010306 general physicsydinfysiikka
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