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首頁> 外文期刊>Progress in Organic Coatings: An International Review Journal >Screening the effect of chemical treatment of steel substrate by a composite cerium-lanthanum nanofilm on the adhesion and corrosion protection properties of a polyamide-cured epoxy coating; Experimental and molecular dynamic simulations
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Screening the effect of chemical treatment of steel substrate by a composite cerium-lanthanum nanofilm on the adhesion and corrosion protection properties of a polyamide-cured epoxy coating; Experimental and molecular dynamic simulations

機(jī)譯:復(fù)合鈰 - 鑭納米膜對(duì)聚酰胺固化環(huán)氧涂層的粘附性和腐蝕保護(hù)性能的復(fù)合鈰 - 鑭的化學(xué)處理效果; 實(shí)驗(yàn)性和分子動(dòng)態(tài)模擬

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Highlights?The steel substrate was treated by cerium-lanthanum based conversion coatings.?Post-treatment of cerium conversion coating by lanthanum gave rise to the superior corrosion resistance.?Post-treatment of cerium coating by lanthanum gave rise to the enhanced interfacial adhesion of epoxy coating.?Molecular dynamic (MD) simulations revealed the enhanced adhesion between the epoxy coating and steel surface.AbstractThe steel substrate was treated by cerium-lanthanum based conversion coatings. The effects of surface treatment of steel on the interfacial adhesion, cathodic delamination and corrosion resistance of the epoxy coating were studied through experimental and computational studies. Corrosion resistance of the epoxy coating applied on the untreated and surface treated samples was evaluated by electrochemical impedance spectroscopy and salt spray test. Results of experiments revealed that p
機(jī)譯:<![cdata [ 突出顯示 ? 通過基于鈰 - 鑭的轉(zhuǎn)化涂層處理鋼基材。 ? Lanthanum鈰轉(zhuǎn)換涂層的后處理產(chǎn)生了卓越的耐腐蝕性。 鑭通過鑭的后處理產(chǎn)生的環(huán)氧涂層的增強(qiáng)的界面粘附。 ? 分子動(dòng)態(tài)(MD)模擬顯示環(huán)氧涂層和鋼表面之間的增強(qiáng)粘合性。 抽象 鋼基材由基于鈰 - 鑭的轉(zhuǎn)化涂層處理。通過實(shí)驗(yàn)和計(jì)算研究,研究了鋼對(duì)鋼表面處理對(duì)環(huán)氧樹脂涂層的界面粘附,陰極分層和耐腐蝕性的影響。通過電化學(xué)阻抗光譜和鹽霧試驗(yàn)評(píng)價(jià)應(yīng)用于未處理和表面處理樣品上的環(huán)氧涂層的耐腐蝕性。實(shí)驗(yàn)結(jié)果顯示p

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