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Titlebook: CFD Modeling and Simulation in Materials Processing 2018; Laurentiu Nastac,Koulis Pericleous,Brian G. Thomas Conference proceedings 2018 T

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書(shū)目名稱CFD Modeling and Simulation in Materials Processing 2018
編輯Laurentiu Nastac,Koulis Pericleous,Brian G. Thomas
視頻videohttp://file.papertrans.cn/221/220255/220255.mp4
概述Presents a timely topic because most industries develop and apply modeling and simulation-based optimization approaches to decrease cost and improve efficiency of their processes as well as to increas
叢書(shū)名稱The Minerals, Metals & Materials Series
圖書(shū)封面Titlebook: CFD Modeling and Simulation in Materials Processing 2018;  Laurentiu Nastac,Koulis Pericleous,Brian G. Thomas Conference proceedings 2018 T
描述This collection presents contributions on computational fluid dynamics (CFD) modeling and simulation of engineering processes from researchers and engineers involved in the modeling of multiscale and multiphase phenomena in material processing systems.?.?.The following processes are covered: Additive Manufacturing (Selective Laser Melting and Laser Powder Bed Fusion); Ironmaking and Steelmaking (Ladle Metallurgical Furnace, EAF, Continuous Casting, Blown Converter, Reheating Furnace, Rotary Hearth Furnace); Degassing; High Pressure Gas Atomization of Liquid Metals; Electroslag Remelting; Electrokinetic Deposition; Friction Stir Welding; Quenching; High Pressure Die Casting; Core Injection Molding; Evaporation of Metals; Investment Casting; Electromagnetic Levitation; Ingot Casting; Casting and Solidification with External Field (electromagnetic stirring and ultrasonic cavitation) Interaction and Microstructure Evolution.?.The collection alsocovers applications of CFD to engineering processes, and demonstrates how CFD can help scientists and engineers to better understand the fundamentals of engineering processes..
出版日期Conference proceedings 2018
關(guān)鍵詞Additive Manufacturing; Ironmaking and Steelmaking; Welding, Casting, and Heat Treatment Processes; Sol
版次1
doihttps://doi.org/10.1007/978-3-319-72059-3
isbn_softcover978-3-319-89133-0
isbn_ebook978-3-319-72059-3Series ISSN 2367-1181 Series E-ISSN 2367-1696
issn_series 2367-1181
copyrightThe Minerals, Metals & Materials Society 2018
The information of publication is updating

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The development of nanotechnologyation of oscillation mark hooks during the initial shell solidification. In this study, the distribution of inclusions at different depths beneath the shell surface was analyzed by auto-SEM. Water simulations and particle image velocimetry (PIV) measurements were conducted to reveal the mechanism of
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The development of nanotechnologyd increasing the proportion of equiaxed dendrites. To investigate the embedded complex melting and solidification processes, a mathematical model has been developed to model all the essential physical behaviors of the fluid flow, heat transfer, melting and solidification during steel strip feeding i
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https://doi.org/10.1007/978-3-7643-8321-3allowing riser size reduction and substantial material savings. This paper presents preliminary simulation results of solidification phenomena in an inductively heated top riser. The electromagnetic field was calculated using a hybrid control volume/integral method to solve the magnetic diffusion eq
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The development of nanotechnologydation of the metal alloy powder and components but is also used to remove unwanted by-products produced from the vaporisation of material. By-products produced during in L-PBF can cause attenuation of the laser and re-deposition of unwanted by-products over the processing area which can affect the
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The development of nanotechnologyeam of liquid metal into droplets which then solidify in flight. We construct a CFD model for gas flow within a gas atomizer which is compared against high-speed video footage of a research scale atomizer. Good agreement between simulation and experiment is found for the presence of Prandtl-Meyer wa
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The development of nanotechnologyong each line scanning which consequently results in intense thermo-capillary convection within the melt pool. Therefore, in order to accurately capture the fluid dynamics, discrete powder particles should be properly modelled. In this study, a 3D thermo-fluid model using the volume of fluid approac
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