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12篇 您的检索式:作者名="Terryn N"
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1Review on modelling of corrosion under droplet electrolyte for predicting atmospheric corrosion rate显示文摘Atmospheric corrosion of metals is the most common type of corrosion which has a significant impact on the environment and operational safety in various situations of everyday life.Some of the common examples can be observed in land,water and air transportation systems,electronic circuit boards,urban and offshore infrastructures.The dew drops formed on metal surface due to condensation of atmospheric moisture facilitates corrosion as an electrolyte.The corrosion mechanisms under these droplets are different from classically known bulk electrolyte corrosion.Due to thin and non-uniform geometric thickness of the droplet electrolyte,the atmospheric oxygen requires a shorter diffusion path to reach the metal surface.The corrosion under a droplet is driven by the depletion of oxygen in the center of the droplet compared to the edge,known as differential aeration.In case of a larger droplet,differential aeration leads to preferential cathodic activity at the edge and is controlled by the droplet geometry.Whereas,for a smaller droplet,the oxygen concentration remains uniform and hence cathodic activity is not controlled by droplet geometry.The geometry of condensed droplets varies dynamically with changing environmental parameters,influencing corrosion mechanisms as the droplets evolve in size.In this review,various modelling approaches used to simulate the corrosion under droplet electrolytes are presented.In the efforts of developing a comprehensive model to estimate corrosion rates,it has been noted from this review that the influence of geometric evolution of the droplet due to condensation/evaporation processes on corrosion mechanisms are yet to be modelled.Dynamically varying external factors like environmental temperature,relative humidity,presence of hygroscopic salts and pollutants influence the evolution of droplet electrolyte,making it a complex phenomenon to investigate.Therefore,an overview of available dropwise condensation and evaporation models which describes the formation and the evolution of droplet geometry are also presented from an atmo s pheric corrosion viewpoint.Bangalore Gangadharacharya Koushik Nils Van den Steen Mesfin Haile Mamme Yves Van Ingelgem Herman Terryn 2021Journal of Materials Science & Technology2021,,3:3
2GTP - binding proteins in plants 显示文摘Terryn N Van M Inze D 1993Plant MoL Biol1993,22,:1
3Light strongly promotes gene transfer from Agrobacterium tumefaciens to plant cells显示文摘ZAMBRE M TERRYN N DE CLERCQ J 2003Planta2003,216,4:1
4Light strongly promoters gene transfer from agrobacterium tumeraciens to plant cells显示文摘 Terryn N Clereq J D 2003Planta2003,216,:1
5Aberrant localization and underglycosylation of highly accumulating single-chain Fv-Fc antibodies in transgenic Arabidopsis seeds显示文摘Droogenbroeck B V Cao J Stadlmann J Altmann F Colanesi S Hillmer S Robinson D G Lerberge E Terryn N Montagu M V Liang M Depicker A Jaeger G D 2007PNAS2007,104,4:1
6Health burden of road traffic accidents,an analysis of clinical data on disability and mortality exposure rates in Flanders and Brussels显示文摘Dhondt S Macharis C Terryn N 2013Accid Anal Prev2013,50,:1
7Light strongly promotes gene transfer from Agrobacterium tumefaciens to plant cells显示文摘Zambre M Terryn N Clercq J D 2003Planta2003,216,:1
8Molecular characterization of an Arabidopsis thaliana cDNA encoding a small GTP-binding protein,Rha1显示文摘 TERRYN N VAN MONTAGU M 1991Plant J1991,1,:1
9Light strongly promotes gene transfer from Agrobacterium tumefaciens to plant cells显示文摘Zambre M Terryn N Clercq J D 2003Planta2003,216,:1
10The effect of brazing process on microstructure evolution and corrosion performance of a modified AA4XXX/AA3XXX brazing sheet显示文摘AFSHAR F N de WIT J H W TERRYN H MOL J M C 2012Corrosion Science2012,58,:1
11Light strongly promotes gene transfer from Agrobacterium tumefaciens to plant cells显示文摘Zambre M Terryn N Clercq J D 2003Planta2003,216,:1
12Light strongly promotes gene transfer from Agrobacterium tumefaciens to plant cells 显示文摘Zambre M Terryn N Clercq J D 2003Planta2003,216,:1
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