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BOD Composite as a New Eco-Friendly Corrosion Inhibitor
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作者 A.m.Eldesoky A.Attia +1 位作者 Omayma E.Ahmed m.abo-elsoud 《材料科学与工程(中英文B版)》 2020年第1期18-33,共16页
BOD composite,(E)-4-(2-(benzo[d]oxazol-2-yl)vinyl)-N,N-dimethylaniline is a new eco-friendly corrosion inhibitor versus P355 Carbon Steel(Cs).BOD was examined in 1.0 N HCl corrosive solution utilizing TP,EIS and EFM t... BOD composite,(E)-4-(2-(benzo[d]oxazol-2-yl)vinyl)-N,N-dimethylaniline is a new eco-friendly corrosion inhibitor versus P355 Carbon Steel(Cs).BOD was examined in 1.0 N HCl corrosive solution utilizing TP,EIS and EFM tests.EIS curves show that adsorption of BOD increases the transfer resistance and decrease the capacitance of interface metal/solution.Molecular docking was utilized to predict the binding between BOD composite with the receptor of 3tt8-hormone of crystal structure analysis of Cu Human Insulin Derivative.The morphology of inhibited P355 Cs was analyzed by checking electron magnifying instrument innovation with energy dispersive X-beam spectroscopy(SEM EDX). 展开更多
关键词 BOD ECO-FRIENDLY P355 Cs SEM EDX molecular docking
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Kinetics and Nanostructure Dependence of High Temperature-Low Stress Creep of Al and Al-0.3%Fe
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作者 m.abo-elsoud 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2012年第1期27-33,共7页
The novel nanostructure of AI and AI-Fe were prepared by ball milling alumina with elemental Fe. The kinetics and nanostructure dependence of high temperature low stress Newtonian creep of AI and AI-0.3%Fe have been i... The novel nanostructure of AI and AI-Fe were prepared by ball milling alumina with elemental Fe. The kinetics and nanostructure dependence of high temperature low stress Newtonian creep of AI and AI-0.3%Fe have been investigated and compared with the predications of the Nabarro-Herring (N-H) theory of directional diffusion. A simple theory based on the climb controlled generation of dislocations from a fixed density of sources is developed to explain the observed behavior. The dislocation density increases and subgrains form during the creep. Also, the presence of precipitates of FeAI3 reduces the creep rate of AI by absolute faster of 100 at the same stress and temperature, in spite of the fact that the grain size in the AI-0.3%Fe alloy is smaller by a factor of about 100 nm. The reduction of grain size to the nanometer scale improves their mechanical properties. Electron diffraction methods combined with transmission electron microscopy (TEM) and scanning electron microscopy (SEM) studies are a convenient and powerful technique for the characterization of the phases and grain structure of the resulting materials. 展开更多
关键词 Ball milling NANOSTRUCTURE CREEP
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