Search results for " Printing"

showing 10 items of 162 documents

Intégration proactive des métiers en conception et formalisation des connaissances spatio-temporelles associées : application à l'assemblage et à la …

2019

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MéréotopologieProactive design[SPI] Engineering Sciences [physics]Additive manufacturingadvanced CADOntologie4D printingconception pour l'X[SPI.MECA] Engineering Sciences [physics]/Mechanics [physics.med-ph]PLM[SPI]Engineering Sciences [physics]CAO avancéeontologies[SPI.MECA.GEME] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanical engineering [physics.class-ph]design for XMatériaux intelligentsFabrication additiveVoxelOntologySmart materials[SPI.MECA]Engineering Sciences [physics]/Mechanics [physics.med-ph]MereotopologyConception proactiveImpression 4D[SPI.MECA.GEME]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanical engineering [physics.class-ph]Advanved CADVoxels
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Low-cost method for obtaining medical rapid prototyping using desktop 3d printing : a novel technique for mandibular reconstruction planning

2017

Background Three-dimensional (3D) printing is relatively a new technology with clinical applications, which enable us to create rapid accurate prototype of the selected anatomic region, making it possible to plan complex surgery and pre-bend hardware for individual surgical cases. This study aimed to express our experience with the use of medical rapid prototype (MRP) of the maxillofacial region created by desktop 3D printer and its application in maxillofacial reconstructive surgeries. Material and methods Three patients with benign mandible tumors were included in this study after obtaining informed consent. All patient's maxillofacial CT scan data was processed by segmentation and isolat…

Novel techniqueRapid prototypingmedicine.medical_specialtyReconstructive surgerybusiness.industryComputer scienceResearch3D printing030206 dentistry:CIENCIAS MÉDICAS [UNESCO]Surgical planning03 medical and health sciences0302 clinical medicineSoftware030220 oncology & carcinogenesisComputer graphics (images)UNESCO::CIENCIAS MÉDICASmedicineMedical physicsSegmentationMandibular reconstructionOral SurgerybusinessGeneral Dentistry
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Development of micro-contact printing of osteosarcoma cells using MeV ion beam lithography

2009

Abstract For investigation of spatial effects in signalling between cells and also signal substances that trigger cell proliferation and behaviour we are developing a micro Contact Printing process ( μ CP ) . In order to allow printing of cells stamps with high aspect ratio are required and these have been fabricated using Programmed Proximity Aperture Lithography (PPAL) with 3 MeV 4 He 2 + ions to produce PMMA masters for casting the stamps in PDMS. A simple printing device was developed and the first results using this to print human osteosarcoma cells is demonstrated.

Nuclear and High Energy PhysicsMaterials scienceApertureMicrocontact printingNanotechnologyIon beam lithographyInstrumentationSignalCastingLithographyProton beam writingNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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A compact linear Paul trap cooler buncher for CRIS

2020

A gas-filled linear Paul trap for the Collinear Resonance Ionisation Spectroscopy (CRIS) experiment at ISOLDE, CERN is currently under development. The trap is designed to accept beam from both ISOLDE target stations and the CRIS stable ion source. The motivation for the project along with the current design, simulations and future plans, will be outlined. peerReviewed

Nuclear and High Energy Physicsspektroskopiatutkimuslaitteet7. Clean energy01 natural sciencesTrap (computing)Nuclear physics0103 physical sciences3D-tulostusDalton Nuclear InstituteNuclear Experiment010306 general physicsInstrumentationPhysicsLarge Hadron Collider010401 analytical chemistryion trapping3D printingIon source0104 chemical sciencesResearchInstitutes_Networks_Beacons/dalton_nuclear_institutelaser spectroscopyPhysics::Accelerator PhysicsIon trapydinfysiikkaBeam (structure)Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Recent advances in upscalable wet methods and ink formulations for printed electronics

2014

This review deals with the use of solution processing approaches for organic electronics with a focus on material ink formulations as well as on their applicability. The solution processing techniques include methods like gravure printing, screen printing and ink-jet printing. Basic principles of each approach are understood and fundamental correlations between material (metals, semiconductors, and dielectrics) ink properties and final device performances can be drawn. Nevertheless, solution processing methods have the potential to evolve as the most promising tools in organic device fabrication techniques and have already been applied successfully in the fields of organic thin film transis…

Organic electronicsMaterials scienceFabricationInkwellink-jetorganic electronics; printing; ink-jet; inksNanotechnologyGeneral ChemistryProcessing methodsprintingThin-film transistorPrinted electronicsinksScreen printingorganic electronicMaterials Chemistry
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Design and Digital Fabrication of a Parametric Joint for Bamboo Sustainable Structures

2019

The study deepens the design of a joining system for bamboo spatial structure by proposing new and advanced solutions that guarantee maximum freedom of composition to the designer. The joint allows to determine and control parametrically the adaptability to any spatial grid configuration of culms with heterogeneous dimensions. Despite the bamboo being one of the main natural building materials in the field of sustainable architecture, currently, it is not used enough due to the lack of adequate connection systems. Bamboo is a rapidly growing renewable resource, naturally available, which is quite strong and lends itself to structural applications. The paper proposes an innovative approach t…

Parametric modeling Bamboo Genetic algorithms 3D printing CAD/CAM designComputer sciencemedia_common.quotation_subjectComputational geometryGridAdaptabilityConstruction engineeringSettore ICAR/09 - Tecnica Delle CostruzioniParametric modelSustainable designJoint (building)Settore ICAR/17 - DisegnoNatural buildingmedia_commonParametric statistics
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A 3D reworking of the urban transformations of Palermo in recent history for a hypothesis of a "City Museum" based on digital visualizations

2021

The objective that drives this research is given by a multitude of information which, in addition to the contribution of technology, allows us to study, analyze, verify and remodel the sites, monuments and evolutions of the city through graphic processes of perspective restitution that start from the analysis of historical photos. The drawing methods, the digital graphic rendering and through the aid of geometric techniques, contribute to the reconstruction of projects and architectures that are now lost, this is possible thanks to the methods of perspective, axonometry and three-dimensional restitution. This remarkable photographic heritage belonging to Palermo, but also to any other city …

Perspective restitution 3D modeling 3D printing Graphic analysis Disappeared architecture Immersive digital visualizationSettore ICAR/17 - Disegno
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Tunable defects in colloidal photonic crystals

2006

We present a bottom-up approach for the construction of tunable functional defects in colloidal photonic crystals (CPCs). These structures incorporate polyelectrolyte multilayer (PEM) planar defects embedded in silica CPCs through a combination of evaporation induced self-assembly and microcontact transfer printing. We show how the enormous chemical diversity inherent to PEMs can be harnessed to create chemically active defect structures responsive to solvent vapor pressures, light, temperature as well as redox cycling. A sharp transmission state within the photonic stopband, induced by the PEM defect, can be precisely, reproducibly and in some cases reversibly tuned by these external stimu…

PlanarMaterials scienceTransfer printingbusiness.industryNanotechnologySelf-assemblyStopbandPhotonicsbusinessEvaporation (deposition)Tunable laserPhotonic crystalSPIE Proceedings
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High-throughput drug screening by Printing Biology

2015

Printing biology is our way to define a novel field employing material printing techniques generally used in plastic electronics to solve important issues of biology by miniaturized and high-throughput platforms. In this field, we already showed the possibility to use Dip Pen Lithography to fabricate single-cell biochips [1]. Also,we employed non-contact patterning methods such as inkjet printing methods to fabricate microarrays for drug screening at solid-liquid interfaces [2] or in picoliter-scale liquid droplets [3] so enabling high-throughput screening of chemical libraries onto disease-based targets. In this regard, printing methods would greatly reduce times and costs of standard drug…

Printing Biology Inkjet printing Raster Image Correlation Spectroscopy
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Modular Paradigm for Composites: Modeling Hydrothermal Degradation of Glass Fibers

2021

Fiber-reinforced composite materials are often used in structural applications in humid, marine, and offshore environments. Superior mechanical properties are compromised by environmental ageing and hydrolytic degradation. Glass fibers are the most broadly used type of fiber reinforcement to date. However, they are also most severely affected by environmental degradation. The glass fiber degradation rates depend on: (1) glass formulation; (2) environmental factors: pH, T, stress; (3) sizing; (4) matrix polymer; (5) fiber orientation and composite layup. In this short review (communication), seven modules within the Modular Paradigm are reviewed and systematized. These modeling tools, encomp…

QH301-705.5PhysicsQC1-999Chemicals: Manufacture use etc.modular paradigmmodelingTP200-248Textile bleaching dyeing printing etc.compositesBiomaterialsMechanics of Materialsenvironmental ageingTP890-933Ceramics and CompositesBiology (General)Civil and Structural Engineeringglass fibersdegradationFibers
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