Search results for "Molding"

showing 10 items of 61 documents

Synergistic effect of fiber content and length on mechanical and water absorption behaviors of Phoenix sp. fiber-reinforced epoxy composites

2016

Phoenix sp. fiber-reinforced epoxy composites have been manufactured using compression molding technique. The effect of reinforcement volume content (0%, 10%, 20%, 30%, 40%, and 50%) and size (300 µm particles, 10 mm, 20 mm, and 30 mm fibers) on quasi-static and dynamic mechanical properties was investigated. Moreover, the water absorption properties of composites were analyzed at different environmental conditions (10℃, 30℃, and 60℃). For each reinforcement size, composites loaded with 40% in volume show highest tensile and flexural properties. Furthermore, composites with 300 µm particles present the best impact properties and the lowest water absorption, regardless of the environmental …

010302 applied physicsVolume contentAbsorption of waterMaterials sciencePolymers and PlasticsMaterials Science (miscellaneous)dynamic mechanical propertieCompression molding02 engineering and technologyEpoxy021001 nanoscience & nanotechnology01 natural sciencesIndustrial and Manufacturing Engineeringwater absorptionvolume fractionvisual_art0103 physical sciencesVolume fractionvisual_art.visual_art_mediummechanical propertieChemical Engineering (miscellaneous)FiberComposite materialPhoenix sp. fiber0210 nano-technologyJournal of Industrial Textiles
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Influence of the Fabrication Accuracy of Hot-Embossed PCL Scaffolds on Cell Growths

2020

Polycaprolactone (PCL) is a biocompatible and biodegradable polymer widely used for the realization of 3D scaffold for tissue engineering applications. The hot embossing technique (HE) allows the obtainment of PCL scaffolds with a regular array of micro pillars on their surface. The main drawback affecting this kind of micro fabrication process is that such structural superficial details can be damaged when detaching the replica from the mold. Therefore, the present study has focused on the optimization of the HE processes through the development of an analytical model for the prediction of the demolding force as a function of temperature. This model allowed calculating the minimum demoldin…

0301 basic medicineScaffoldHistologyFabricationMaterials scienceScanning electron microscopelcsh:BiotechnologyBiomedical EngineeringBioengineering02 engineering and technologydemolding forcemedicine.disease_causeMicrostructured scaffold03 medical and health scienceschemistry.chemical_compoundmicrostructured scaffoldsTissue engineeringpolycaprolactoneMoldlcsh:TP248.13-248.65medicineCell viabilityCcell viabilityOriginal ResearchBioengineering and Biotechnology021001 nanoscience & nanotechnologyMicrostructureBiodegradable polymer030104 developmental biologychemistryhot embossingPolycaprolactone0210 nano-technologyCell viability; Demolding force; Hot embossing; Microstructured scaffolds; PolycaprolactoneBiotechnologyBiomedical engineeringFrontiers in Bioengineering and Biotechnology
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Amide additives in polyolefins and imperfections in blown films

1985

Blow moldingMaterials scienceOleamideInfraredDiffusionGeneral EngineeringCompatibility (geochemistry)Polyethylenechemistry.chemical_compoundchemistryChemical engineeringAmidePolymer chemistryGeneral Materials ScienceJournal of Polymer Science: Polymer Letters Edition
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Filmability and properties of compatibilized PA6/LDPE blends

2005

Blends of low density polyethylene (LDPE) and polyamide 6 (PA6), compatibilized with an ethylene-acrylic acid copolymer (EAA), either alone or combined with a low molar mass bis-oxazoline compound (PBO), have been processed in film blowing operations and the properties of the films have been investigated. Without of compatibilization, the filmability of the blend was very poor and no significant specimen was collected. As a result of the reactive compatibilization, the blends with EAA and even more with the EAA-PBO, were processed successfully in film blowing. The films of the quaternary blends were shown to possess satisfactory mechanical properties as a result of fine and stable morpholog…

Blow moldingReaction mechanismMaterials scienceMolar massPolymers and PlasticsGeneral ChemistryCompatibilizationchemistry.chemical_compoundLow-density polyethylenechemistryChemical engineeringPolyamidePolymer chemistryMaterials ChemistryCopolymerPolymer blendPolymer Engineering & Science
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Compression and injection molding of recycled polyethylene for greenhouses in presence of the natural fibres

2003

Compression and injection molding greenhouses natural fibres
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Compression and injection molding of recycled polyethylene for greenhouses in presence of the natural fibers

2003

Compression and injection molding recycled polyethylene
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Automated Uncertainty Quantification Through Information Fusion in Manufacturing Processes

2017

International audience; Evaluation of key performance indicators (KPIs) such as energy consumption is essential for decision-making during the design and operation of smart manufacturing systems. The measurements of KPIs are strongly affected by several uncertainty sources such as input material uncertainty, the inherent variability in the manufacturing process, model uncertainty, and the uncertainty in the sensor measurements of operational data. A comprehensive understanding of the uncertainty sources and their effect on the KPIs is required to make the manufacturing processes more efficient. Towards this objective, this paper proposed an automated methodology to generate a hierarchical B…

Computer scienceinjection molding02 engineering and technologycomputer.software_genreIndustrial and Manufacturing Engineering[SPI]Engineering Sciences [physics]GME0202 electrical engineering electronic engineering information engineeringUncertainty quantificationuncertaintyautomationhierarchicalbusiness.industryBayesian network020207 software engineeringmeta-modelAutomationComputer Science ApplicationsMetamodelingInformation fusionBayesian networkControl and Systems Engineeringsemantic020201 artificial intelligence & image processingData miningbusinesscomputer
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The continuous cooling transformation (CCT) as a flexible tool to investigate polymer crystallization under processing conditions

2009

An experimental route for investigating polymer crystallization over a wide range of cooling rates (from 0.01 to 1000◦C/s) and pressures (from 0.1 to 40 MPa) is illustrated, using a method that recalls the approach adopted in metallurgy for studying structure development in metals. Two types of experimental setup were used, namely an apparatus for fast cooling of thin films (100–200 μm thick) at various cooling rates under atmospheric pressure and a device (based on a on-purpose modified injection molding machine) for quenching massive samples (about 1–2 cm3) under hydrostatic pressure fields. In both cases, ex situ characterization experiments were carried out to probe the resulting struct…

DiffractionQuenchingSettore ING-IND/24 - Principi Di Ingegneria ChimicaMaterials sciencePolymers and PlasticsAtmospheric pressureGeneral Chemical EngineeringCrystallization of polymersOrganic ChemistryHydrostatic pressureAnalytical chemistryContinuous cooling transformationSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiCooling rate Density Morphology Pressure ProcessingThin filmInjection molding machine
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An automatic quality system for injection molding

2007

This paper describes a fully automatic quality system for injection molding. The proposed system includes an on-line measurement platform with a digital camera, a methodology for adaptive design of experiments (DOE), statistical modeling, process monitoring, and a closed loop process control. The system has been tested in the manufacturing of plastic parts for mobile phones.

Engineeringbusiness.product_categorybusiness.industryProcess (computing)Statistical modelMolding (process)Automotive engineeringQuality management systemMobile phoneAdaptive designProcess controlbusinessSimulationDigital cameraSPIE Proceedings
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The role of crystalline, mobile amorphous and rigid amorphous fractions in the performance of recycled poly (ethylene terephthalate) (PET)

2012

[EN] The action of thermo-mechanical degradation induced by mechanical recycling of poly(ethylene terephthalate) was simulated by successive injection moulding cycles. Degradation reactions provoked chain scissions and a reduction in molar mass mainly driven by the reduction of diethyleneglycol to ethylene glycol units in the flexible domain of the PET backbone, and the formation of -OH terminated species with shorter chain length. The consequent microstructural changes were quantified taking into account a three-fraction model involving crystalline, mobile amorphous (MAF) and rigid amorphous fractions (RAF). A remarkable increase of RAF, to a detriment of MAF was observed, while the percen…

EthyleneSolucions polimèriquesPolymers and PlasticsInjection mouldingDifferential scanning calorimetry (DSC)Crystalline fractionsMechanical propertiesThermo-mechanical degradationchemistry.chemical_compoundDegradationAmorphous materialsPolymer blendsMaterials ChemistryMechanical recyclingRecyclingComposite materialDiethyleneglycolPoly(ethylene terephthalate) (PET)Injection moldingMolar massMechanical featureRecycled poly(ethylene terephthalate)Microstructural changesCondensed Matter PhysicsChain scissionRigid-amorphous fractionMechanics of MaterialsMAQUINAS Y MOTORES TERMICOSPolymer blendMaterials scienceMechanical performanceViscoelasticityEthyleneDifferential scanning calorimetrySegmental dynamicsInfrared analysis (FT-IR)Degradation reactionDifferential scanning calorimetryInjection mouldingPolyethylene terephthalatesEthylene glycolTermoplàsticsCrystalline materialsShorter chainsAmorphous solidchemistryGlass-rubber relaxationProcessing cyclesEthylene glycol
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