Search results for "Materials Engineering"

showing 10 items of 69 documents

The effect of curing conditions on the electrical properties of an epoxy resin

2016

010302 applied physicsMaterials science0205 materials engineering020502 materialsvisual_art0103 physical sciencesvisual_art.visual_art_medium02 engineering and technologyEpoxyComposite material01 natural sciencesCuring (chemistry)
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An investigation into the fracture behaviour of honeycombs with density gradients

2020

International audience; In this study we perform an experimental and computational investigation about the fracture behaviour of polymer honeycombs presenting gradients in terms of lattice density. Such lattice relative density variations are introduced with the aim of mimicking the micro-morphology encountered in some natural materials, such as several kinds of woods, which seems related to the ability of the corresponding macro-material to delay the propagation of fracture under certain conditions. Starting from the conclusions of previous computational analyses, we perform a few experimental tensile tests on ABS model honeycombs obtained by additive manufacturing, with the aim of getting…

010302 applied physicsMaterials scienceNatural materials020502 materialsAdditive ManufacturingComputational Mechanics02 engineering and technologyMechanics[PHYS.MECA.MSMECA]Physics [physics]/Mechanics [physics]/Materials and structures in mechanics [physics.class-ph]01 natural sciencesFracture MechanicFinite element method[PHYS.MECA.MEMA]Physics [physics]/Mechanics [physics]/Mechanics of materials [physics.class-ph]Fracture toughnessLattice Material0205 materials engineeringHomogeneousLattice (order)0103 physical sciencesUltimate tensile strength[PHYS.MECA.SOLID]Physics [physics]/Mechanics [physics]/Solid mechanics [physics.class-ph]Fracture (geology)[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Relative densitySettore ING-IND/04 - Costruzioni E Strutture Aerospaziali
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Regarding the influence of the particle size of crumb rubber from waste rubber on the physical and mechanical characteristics of reclaimed rubber

2017

Thus, at present, a large amount of rubber waste cannot be higher harnessed due to recovery technologies used. Also, the requirements for new products of rubber worldwide are greater than the production capacity and the availability of raw materials. To offset this balance is necessary to improve technologies for recycling waste rubber so to can get regenerated rubber with the best mechanical physical characteristics. The main technology for obtaining the regenerated rubber is based on the rubber waste shredding and making the powder, so that it can be carried out de-vulcanization in autoclave. All the time it was monitored as the de-vulcanization process to be as economical and less pollut…

020502 materials020209 energy02 engineering and technologyRaw materialPulp and paper industryAutoclave0205 materials engineeringNatural rubberlcsh:TA1-2040visual_art0202 electrical engineering electronic engineering information engineeringvisual_art.visual_art_mediumParticleCrumb rubberParticle sizeWaste rubberComposite materiallcsh:Engineering (General). Civil engineering (General)MATEC Web of Conferences
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Effect of active heating and cooling on microstructure and mechanical properties of friction stir–welded dissimilar aluminium alloy and titanium butt…

2019

A butt joint configuration of AA6061–pure Ti was welded using friction stir welding (FSW) with an assisted cooling and heating conditions, aiming to attain a flawless joint. Cooling-assisted friction stir welding (CFSW) was carried out with a different cooling medium such as CO2, compressed air and water at controlled flow rate. However, heating-assisted friction stir welding (HFSW) was performed with heating source of GTAW torch just before FSW tool at different current density. Prepared specimens were subjected to optical microscopy (OM), scanning electron microscopy (SEM) and electrodischarge spectroscopy (EDS) for microstructural characterizations. The tensile strength and microhardness…

0209 industrial biotechnologyMaterials scienceDissimilar metal joiningMechanical properties02 engineering and technologyWeldingIndentation hardness020501 mining & metallurgylaw.inventionHeating020901 industrial engineering & automationlawUltimate tensile strengthAluminium alloyFriction stir weldingmechanical propertieboron carbidefriction stir processingComposite materialmetal matrix compositeInterfacial microstructureHybrid friction stir weldingMechanical EngineeringGas tungsten arc weldingMetals and AlloysMicrostructure0205 materials engineeringMechanics of Materialsvisual_artaluminumvisual_art.visual_art_mediumButt jointMaterials processingCooling
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sj-docx-1-jdr-10.1177_00220345221094510 – Supplemental material for Pathways between Social Capital and Oral Health from Childhood to Adolescence

2022

Supplemental material, sj-docx-1-jdr-10.1177_00220345221094510 for Pathways between Social Capital and Oral Health from Childhood to Adolescence by J.K. Knorst, B. Brondani, M.V. Vettore, D. Hesse, F.M. Mendes and T.M. Ardenghi in Journal of Dental Research

110599 Dentistry not elsewhere classifiedFOS: Materials engineeringFOS: Clinical medicine91299 Materials Engineering not elsewhere classified
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sj-docx-1-jdr-10.1177_00220345211027811 – Supplemental material for Phytocystatin CsinCPI-2 Reduces Osteoclastogenesis and Alveolar Bone Loss

2021

Supplemental material, sj-docx-1-jdr-10.1177_00220345211027811 for Phytocystatin CsinCPI-2 Reduces Osteoclastogenesis and Alveolar Bone Loss by N. Da Ponte Leguizamón, R.S. de Molon, G. Coletto-Nunes, A.V.B. Nogueira, S.V. Rocha, D.M. Neo-Justino, A. Soares-Costa, P.S. Cerri, U.H. Lerner, P.P.C. Souza and J.A. Cirelli in Journal of Dental Research

110599 Dentistry not elsewhere classifiedFOS: Materials engineeringFOS: Clinical medicine91299 Materials Engineering not elsewhere classified
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sj-pdf-1-jdr-10.1177_00220345211012386 – Supplemental material for Wnt1 Promotes Cementum and Alveolar Bone Growth in a Time-Dependent Manner

2021

Supplemental material, sj-pdf-1-jdr-10.1177_00220345211012386 for Wnt1 Promotes Cementum and Alveolar Bone Growth in a Time-Dependent Manner by C. Nottmeier, N. Liao, A. Simon, M.G. Decker, J. Luther, M. Schweizer, T. Yorgan, M. Kaucka, E. Bockamp, B. Kahl-Nieke, M. Amling, T. Schinke, J. Petersen and T. Koehne in Journal of Dental Research

110599 Dentistry not elsewhere classifiedFOS: Materials engineeringFOS: Clinical medicine91299 Materials Engineering not elsewhere classified
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sj-docx-1-jdr-10.1177_00220345221094510 – Supplemental material for Pathways between Social Capital and Oral Health from Childhood to Adolescence

2022

Supplemental material, sj-docx-1-jdr-10.1177_00220345221094510 for Pathways between Social Capital and Oral Health from Childhood to Adolescence by J.K. Knorst, B. Brondani, M.V. Vettore, D. Hesse, F.M. Mendes and T.M. Ardenghi in Journal of Dental Research

110599 Dentistry not elsewhere classifiedFOS: Materials engineeringFOS: Clinical medicine91299 Materials Engineering not elsewhere classified
researchProduct

sj-docx-1-jdr-10.1177_00220345211027811 – Supplemental material for Phytocystatin CsinCPI-2 Reduces Osteoclastogenesis and Alveolar Bone Loss

2021

Supplemental material, sj-docx-1-jdr-10.1177_00220345211027811 for Phytocystatin CsinCPI-2 Reduces Osteoclastogenesis and Alveolar Bone Loss by N. Da Ponte Leguizamón, R.S. de Molon, G. Coletto-Nunes, A.V.B. Nogueira, S.V. Rocha, D.M. Neo-Justino, A. Soares-Costa, P.S. Cerri, U.H. Lerner, P.P.C. Souza and J.A. Cirelli in Journal of Dental Research

110599 Dentistry not elsewhere classifiedFOS: Materials engineeringFOS: Clinical medicine91299 Materials Engineering not elsewhere classified
researchProduct

sj-pdf-1-jdr-10.1177_00220345211012386 – Supplemental material for Wnt1 Promotes Cementum and Alveolar Bone Growth in a Time-Dependent Manner

2021

Supplemental material, sj-pdf-1-jdr-10.1177_00220345211012386 for Wnt1 Promotes Cementum and Alveolar Bone Growth in a Time-Dependent Manner by C. Nottmeier, N. Liao, A. Simon, M.G. Decker, J. Luther, M. Schweizer, T. Yorgan, M. Kaucka, E. Bockamp, B. Kahl-Nieke, M. Amling, T. Schinke, J. Petersen and T. Koehne in Journal of Dental Research

110599 Dentistry not elsewhere classifiedFOS: Materials engineeringFOS: Clinical medicine91299 Materials Engineering not elsewhere classified
researchProduct