Search results for "VDP::Teknologi: 500::Materialteknologi: 520"

showing 3 items of 23 documents

The effect of Mo and Ge reactive elements on high-temperature oxidation of higher manganese silicide

2021

Abstract Higher manganese silicide (HMS) alloys (Mnx-αMoαSiy-βGeβ (x = 0.99–1.011, α = 0.005–0.02, y = 1.75, β = 0.005–0.01)) were studied to elucidate the effect of Mo and Ge pertaining to oxidation. Oxidation experiments were conducted using thermogravimetry and characterized using x-ray photoelectron spectroscopy (XPS) and scanning electron microscopy (SEM). Isoconversion experiments below 450 °C, shows that doping (up to 2 at%) raises the oxidation potential of HMS. Isothermally, the oxidation rate reduces buy one order of magnitude by doping on Mn and/or Si sites from 0.5 to 2 at%, revealing that the dopants-based oxides do not lessen the robustness of SiO2 oxide.

VDP::Teknologi: 500::Materialteknologi: 520Materials scienceDopantScanning electron microscopeGeneral Chemical EngineeringDopingInorganic chemistrytechnology industry and agricultureOxideGeneral ChemistryIsothermal processCorrosionThermogravimetrychemistry.chemical_compoundchemistryX-ray photoelectron spectroscopyGeneral Materials ScienceCorrosion Science
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Investigation of the effect of different post-weld heat treatment procedures on pipe strength and integrity : Calibration of numerical plasticity for…

2020

Master's thesis in Civil and structural engineering (BYG508)

VDP::Teknologi: 500::Materialteknologi: 520VDP::Teknologi: 500::Bygningsfag: 530BYG508
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CoS2/TiO2 Nanocomposites for Hydrogen Production under UV Irradiation

2019

Transition metal chalcogenides have intensively focused on photocatalytic hydrogen production for a decade due to their stronger edge and the quantum confinement effect. This work mainly focuses on synthesis and hydrogen production efficiencies of cobalt disulfide (CoS2)-embedded TiO2 nanocomposites. Materials are synthesized by using a hydrothermal approach and the hydrogen production efficiencies of pristine CoS2, TiO2 nanoparticles and CoS2/TiO2 nanocomposites are compared under UV irradiation. A higher amount of hydrogen production (2.55 mmol g&minus

hydrothermalMaterials scienceHydrogenNanoparticlechemistry.chemical_element02 engineering and technology010402 general chemistry01 natural scienceswater splittingArticleTransition metalGeneral Materials Sciencetitaniatransition metal chalcogenidesHydrogen productionNanocompositeVDP::Teknologi: 500::Materialteknologi: 520::Funksjonelle materialer: 522021001 nanoscience & nanotechnology0104 chemical sciencesVDP::Teknologi: 500Chemical engineeringchemistryhydrogenPhotocatalysisWater splitting0210 nano-technologyCobaltMaterials
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