Search results for "Civil Engineering"

showing 10 items of 1216 documents

Single-Point Incremental Forming of Titanium and Titanium Alloy Sheets.

2021

Incremental sheet forming of titanium and its alloys has a significant role in modern manufacturing techniques because it allows for the production of high-quality products with complex shapes at low production costs. Stamping processes are a major contributor to plastic working techniques in industries such as automotive, aerospace and medicine. This article reviews the development of the single-point incremental forming (SPIF) technique in titanium and its alloys. Problems of a tribological and microstructural nature that make it difficult to obtain components with the desired geometric and shape accuracy are discussed. Great emphasis is placed on current trends in SPIF of difficult-to-fo…

TechnologyMaterials scienceincremental sheet formingfrictionmicrostructuresheet metal formingchemistry.chemical_elementReviewSurface roughnessFormabilityGeneral Materials Sciencelubricationsingle-point incremental formingMicroscopyQC120-168.85TMetallurgyQH201-278.5Titanium alloyForming processesStampingEngineering (General). Civil engineering (General)TK1-9971chemistryDescriptive and experimental mechanicsLubricationElectrical engineering. Electronics. Nuclear engineeringTA1-2040Incremental sheet formingTitaniumMaterials (Basel, Switzerland)
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A New Methodological Approach to Correlate Protective and Microscopic Properties by Soft X-ray Microscopy and Solid State NMR Spectroscopy: The Case …

2021

Hydrophobic treatment is one of the most important interventions usually carried out for the conservation of stone artefacts and monuments. The study here reported aims to answer a general question about how two polymers confer different protective performance. Two fluorinated-based polymer formulates applied on samples of Cusa’s stone confer a different level of water repellence and water vapour permeability. The observed protection action is here explained on the basis of chemico-physical interactions. The distribution of the polymer in the pore network was investigated using scanning electron microscopy and X-ray microscopy. The interactions between the stone substrate and the protective…

TechnologyMaterials sciencestone protectionrelaxation timesScanning electron microscopeQH301-705.5QC1-99902 engineering and technology010402 general chemistry01 natural sciencessynchrotron soft X-ray microscopyMicroscopyGeneral Materials ScienceBiology (General)SpectroscopyInstrumentationQD1-999Fluid Flow and Transfer Processeschemistry.chemical_classification<sup>19</sup>F NMRProcess Chemistry and TechnologyTPhysicsGeneral EngineeringSubstrate (chemistry)Polymer021001 nanoscience & nanotechnologyEngineering (General). Civil engineering (General)0104 chemical sciencesComputer Science ApplicationsChemistrySolid-state nuclear magnetic resonancechemistryChemical engineeringsolid state NMR spectroscopyProtective Agentsphysic-chemical interactionsSoft x-ray microscopyTA1-20400210 nano-technologyApplied Sciences
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Analytical Modeling of the Maximum Power Point with Series Resistance

2021

This paper presents new analytical expressions for the maximum power point voltage, current, and power that have an explicit dependence on the series resistance. An explicit expression that relates the series resistance to well-known solar cell parameters was also derived. The range of the validity of the model, as well as the mathematical assumptions taken to derive it are explained and discussed. To test the accuracy of the derived model, a numerical single-diode model with solar cell parameters whose values can be found in the latest installment of the solar cell efficiency tables was used. The accuracy of the derived model was found to increase with increasing bandgap and to decrease wi…

TechnologyMaximum power principleQH301-705.5QC1-999law.inventionlawSolar cellRange (statistics)Applied mathematicsGeneral Materials ScienceBiology (General)QD1-999InstrumentationMathematicsFluid Flow and Transfer ProcessesEquivalent series resistanceTPhysicsProcess Chemistry and TechnologyGeneral EngineeringEngineering (General). Civil engineering (General)Expression (mathematics)Computer Science ApplicationsPower (physics)ChemistryVDP::Teknologi: 500Solar cell efficiencymaximum power pointanalytical expressionsTA1-2040series resistanceLambert’s W functionVoltage
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A Data-Driven Approach for Studying the Influence of Carbides on Work Hardening of Steel

2022

This study proposes a new approach to determine phenomenological or physical relations between microstructure features and the mechanical behavior of metals bridging advanced statistics and materials science in a study of the effect of hard precipitates on the hardening of metal alloys. Synthetic microstructures were created using multi-level Voronoi diagrams in order to control microstructure variability and then were used as samples for virtual tensile tests in a full-field crystal plasticity solver. A data-driven model based on Functional Principal Component Analysis (FPCA) was confronted with the classical Voce law for the description of uniaxial tensile curves of synthetic AISI 420 ste…

TechnologyMicroscopyQC120-168.85FPCATQH201-278.5stress–strain diagramlinear mixed-effects modelEngineering (General). Civil engineering (General)TK1-9971Descriptive and experimental mechanicsVoronoi diagramssynthetic microstructure; stress–strain diagram; FPCA; Voronoi diagrams; Voce law; linear mixed-effects modelGeneral Materials ScienceElectrical engineering. Electronics. Nuclear engineeringTA1-2040Voronoi diagramsynthetic microstructureVoce law
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Repeated Load Triaxial Testing of Recycled Excavation Materials Blended with Recycled Phyllite Materials

2022

Recycled Excavation Materials (REM) are becoming viable alternative construction resources due to their economic benefits. However, REM may be composed of weak rocks, e.g., phyllites, limiting the use in a base layer. The present paper attempts to further the knowledge of the mechanical performance of REM by performing Repeated Load Triaxial Tests (RLTT). REM are mixed with Recycled Phyllite Materials (RPM) in systematic blends of 0%, 25%, 50%, and 100%. The batches&rsquo; resilient modulus (MR) and permanent deformation (PD) characteristics were assessed to establish the maximum RPM allowed into REM while maintaining the required performance. Hicks and Monismith&rsquo;s and Uzan&rsquo;s mo…

TechnologyMicroscopyQC120-168.85TQH201-278.5Engineering (General). Civil engineering (General)Article:Teknologi: 500 [VDP]TK1-9971recycled excavation materialsDescriptive and experimental mechanicsrecycled phyllite materialsRecycled excavation materialsresilient modulusRecycled phyllite materialspermanent deformationResilient modulusGeneral Materials ScienceElectrical engineering. Electronics. Nuclear engineeringTA1-2040VDP::Technology: 500::Materials science and engineering: 520Permanent deformationrecycled excavation materials; recycled phyllite materials; resilient modulus; permanent deformation
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DFT/TD-DFT Framework of Mixed-Metal Complexes with Symmetrical and Unsymmetrical Bridging Ligands—Step-By-Step Investigations: Mononuclear, Dinuclear…

2021

Recently, mono- and dinuclear complexes have been in the interest of scientists due to their potential application in optoelectronics. Herein, progressive theoretical investigations starting from mononuclear followed by homo- and heterometallic dinuclear osmium and/or ruthenium complexes with NCN-cyclometalating bridging ligands substituted by one or two kinds of heteroaryl groups (pyrazol-1-yl and 4-(2,2-dimethylpropyloxy)pyrid-2-yl) providing the short/long axial symmetry or asymmetry are presented. Step-by-step information about the particular part that built the mixed-metal complexes is crucial to understanding their behavior and checking the necessity of their eventual studies. Evaluat…

TechnologyMicroscopyQC120-168.85complexesTQH201-278.5pyrene bridging ligands; complexes; osmium; ruthenium; DFT; TD-DFTosmiumEngineering (General). Civil engineering (General)DFTArticleTK1-9971pyrene bridging ligandsDescriptive and experimental mechanicsGeneral Materials ScienceElectrical engineering. Electronics. Nuclear engineeringTA1-2040rutheniumTD-DFTMaterials
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Electrochemical Synthesis of Zinc Oxide Nanostructures on Flexible Substrate and Application as an Electrochemical Immunoglobulin-G Immunosensor

2022

Immunoglobulin G (IgG), a type of antibody, represents approximately 75% of serum antibodies in humans, and is the most common type of antibody found in blood circulation. Consequently, the development of simple, fast and reliable systems for IgG detection, which can be achieved using electrochemical sandwich-type immunosensors, is of considerable interest. In this study we have developed an immunosensor for human (H)-IgG using an inexpensive and very simple fabrication method based on ZnO nanorods (NRs) obtained through the electrodeposition of ZnO. The ZnO NRs were treated by electrodepositing a layer of reduced graphene oxide (rGO) to ensure an easy immobilization of the antibodies. On I…

TechnologyMicroscopyQC120-168.85nanotechnologyimmunoglobulin-GTQH201-278.5immunosensorszinc oxideEngineering (General). Civil engineering (General)nanorodTK1-9971Settore ING-IND/23 - Chimica Fisica ApplicataDescriptive and experimental mechanicsSettore ING-IND/17 - Impianti Industriali MeccanicielectrodepositionElectrochemical sensorszinc oxide; nanorod; immunosensors; electrodeposition; immunoglobulin-G; nanostructured materials; electrochemical sensorsnanostructured materialsGeneral Materials ScienceElectrical engineering. Electronics. Nuclear engineeringTA1-2040
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Intrinsic Point Defects in Silica for Fiber Optics Applications

2021

Due to its unique properties, amorphous silicon dioxide (a-SiO2) or silica is a key material in many technological fields, such as high-power laser systems, telecommunications, and fiber optics. In recent years, major efforts have been made in the development of highly transparent glasses, able to resist ionizing and non-ionizing radiation. However the widespread application of many silica-based technologies, particularly silica optical fibers, is still limited by the radiation-induced formation of point defects, which decrease their durability and transmission efficiency. Although this aspect has been widely investigated, the optical properties of certain defects and the correlation betwee…

TechnologyMicroscopyQC120-168.85optical fibersTSettore FIS/01 - Fisica SperimentaleQH201-278.5Reviewsilica point defectsEngineering (General). Civil engineering (General)TK1-9971Descriptive and experimental mechanicsradiation effectsGeneral Materials ScienceElectrical engineering. Electronics. Nuclear engineeringTA1-2040Materials
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Investigation of the Thermomechanical Response of Cyclically Loaded NiTi Alloys by Means of Temperature Frequency Domain Analyses

2021

Nickel–Titanium (NiTi) shape memory alloys subjected to cyclic loading exhibit reversible temperature changes whose modulation is correlated with the applied load. This reveals the presence of reversible thermomechanical heat sources activated by the applied stresses. One such source is the elastocaloric effect, accounting for the latent heat of Austenite–Martensite phase transformation. It is, however, observed that when the amplitude of cyclic loads is not sufficient to activate or further propagate this phase transformation, the material still exhibits a strong cyclic temperature modulation. The present work investigates the thermomechanical behaviour of NiTi under such low-amplitude cyc…

TechnologyMicroscopyQC120-168.85shape memory alloys; Nitinol; super-elasticity; Thermoelastic Stress Analysis; Digital Image Correlation; thermomechanical couplingsTQH201-278.5shape memory alloysNitinolEngineering (General). Civil engineering (General)thermomechanical couplingsArticleTK1-9971Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineDescriptive and experimental mechanicsDigital Image Correlation Nitinol Shape memory alloys Super-elasticity Thermoelastic Stress Analysis Thermomechanical couplingsDigital Image CorrelationThermoelastic Stress Analysissuper-elasticityGeneral Materials ScienceElectrical engineering. Electronics. Nuclear engineeringTA1-2040Materials
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PIECEWISE ANOMALY DETECTION USING MINIMAL LEARNING MACHINE FOR HYPERSPECTRAL IMAGES

2021

Abstract. Hyperspectral imaging, with its applications, offers promising tools for remote sensing and Earth observation. Recent development has increased the quality of the sensors. At the same time, the prices of the sensors are lowering. Anomaly detection is one of the popular remote sensing applications, which benefits from real-time solutions. A real-time solution has its limitations, for example, due to a large amount of hyperspectral data, platform’s (drones or a cube satellite) constraints on payload and processing capability. Other examples are the limitations of available energy and the complexity of the machine learning models. When anomalies are detected in real-time from the hyp…

TechnologyMinimal Learning Machinehyperspectral imagingComputer scienceRemote sensing applicationConstant false alarm rateRobustness (computer science)Applied optics. Photonicshyperspektrikuvantaminenbusiness.industryTspektrikuvausPayload (computing)Hyperspectral imagingPattern recognitionEngineering (General). Civil engineering (General)anomaly detectionTA1501-1820piecewise approachmachine learningkoneoppiminenPiecewiseAnomaly detectionNoise (video)Artificial intelligenceTA1-2040businessreal-time computationISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences
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