装备环境工程
裝備環境工程
장비배경공정
EQUIPMENT ENVIRONMENTAL ENGINEERING
2014年
1期
18-23
,共6页
杨小奎%张涛%张世艳%何建新%牟献良
楊小奎%張濤%張世豔%何建新%牟獻良
양소규%장도%장세염%하건신%모헌량
镁合金%环氧富锌涂层%电化学阻抗谱
鎂閤金%環氧富鋅塗層%電化學阻抗譜
미합금%배양부자도층%전화학조항보
magnesium alloys%Zn-rich epoxy coating%electrochemical impedance spectroscopy
目的:研究环氧富锌涂层对AZ91D镁合金的腐蚀防护能力。方法采用机械喷涂法在AZ91D镁合金表面制备一种保护性的环氧富锌涂层。采用电化学阻抗谱(EIS)研究环氧富锌涂层在0.5 mol/L的Na2SO4腐蚀溶液中的电化学腐蚀行为及其对镁合金的腐蚀防护能力。结果浸泡初期,环氧富锌涂层的阻抗谱中只出现一个时间常数,暗示着环氧富锌涂层优异的阻挡层作用;浸泡48 h后,环氧富锌涂层阻抗谱中出现两个时间常数,高频和低频时间常数分别对应环氧富锌涂层中高聚合的介电性质和锌粉的活性溶解;浸泡336 h后,环氧富锌涂层仍具有很高的阻抗模值,表明此时环氧富锌涂层对镁合金仍能提供良好的腐蚀防护。结论环氧富锌涂层在0.5 mol/L Na2SO4腐蚀溶液中能对AZ91D镁合金提供很好的腐蚀防护。
目的:研究環氧富鋅塗層對AZ91D鎂閤金的腐蝕防護能力。方法採用機械噴塗法在AZ91D鎂閤金錶麵製備一種保護性的環氧富鋅塗層。採用電化學阻抗譜(EIS)研究環氧富鋅塗層在0.5 mol/L的Na2SO4腐蝕溶液中的電化學腐蝕行為及其對鎂閤金的腐蝕防護能力。結果浸泡初期,環氧富鋅塗層的阻抗譜中隻齣現一箇時間常數,暗示著環氧富鋅塗層優異的阻擋層作用;浸泡48 h後,環氧富鋅塗層阻抗譜中齣現兩箇時間常數,高頻和低頻時間常數分彆對應環氧富鋅塗層中高聚閤的介電性質和鋅粉的活性溶解;浸泡336 h後,環氧富鋅塗層仍具有很高的阻抗模值,錶明此時環氧富鋅塗層對鎂閤金仍能提供良好的腐蝕防護。結論環氧富鋅塗層在0.5 mol/L Na2SO4腐蝕溶液中能對AZ91D鎂閤金提供很好的腐蝕防護。
목적:연구배양부자도층대AZ91D미합금적부식방호능력。방법채용궤계분도법재AZ91D미합금표면제비일충보호성적배양부자도층。채용전화학조항보(EIS)연구배양부자도층재0.5 mol/L적Na2SO4부식용액중적전화학부식행위급기대미합금적부식방호능력。결과침포초기,배양부자도층적조항보중지출현일개시간상수,암시착배양부자도층우이적조당층작용;침포48 h후,배양부자도층조항보중출현량개시간상수,고빈화저빈시간상수분별대응배양부자도층중고취합적개전성질화자분적활성용해;침포336 h후,배양부자도층잉구유흔고적조항모치,표명차시배양부자도층대미합금잉능제공량호적부식방호。결론배양부자도층재0.5 mol/L Na2SO4부식용액중능대AZ91D미합금제공흔호적부식방호。
Objective To investigate the corrosion protection properties of Zn-rich epoxy coating provided for AZ91D magnesium Alloy. Methods A protective Zn-rich epoxy coating was prepared on AZ91D magnesium alloy by a method of mechanical spray. The electrochemical corrosion behavior and corrosion protection properties of Zn-rich epoxy coating provided for magnesium were investigated with electrochemical impedance spectroscopy (EIS) in 0.5 mol/L Na2SO4 corrosive media. Results In the initial immersion stage,the coating presented only one time constant suggesting the excellent barrier-type coating. At an immersion time of 48 h,two time constants were observed in the electrochemical impedance spectroscopy which corresponded to the dielectric properties of polymer in the high-frequency range and the active dissolution of Zn particles in the low-frequency range. At an immersion time of 336 h,the Zn-rich epoxy coating exhibited highly resistant module which suggested that Zn-rich epoxy coating still provided excellent corrosion protection for AZ91D magnesium alloy. Conclusion The Zn-rich epoxy coating could provide excellent corrosion protection for the AZ91D magnesium alloy in 0.5 mol/L Na2SO4 corrosive media.