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Effect of Samarium in Corrosion and Microstructure of Al-5Zn-0.5Cu as Low Driving Voltage Sacrificial Anode

机译:钐在Al-5Zn-0.5cu腐蚀和微观结构中的影响低驱动电压牺牲阳极

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Sacrificial Anode Low voltage is the latest generation of the sacrificial anode that can prevent the occurrence of Hydrogen Cracking (HIC) due to overprotection. The Al-5n-0.5Cu alloy showed the potential to be developed as the new sacrificial anode. However, the main problem is copper made A12Cu intermetallic in grain boundary. Samarium is added to modify the shape of the intermetallic to make it finer and make the corrosion uniform. Several characterizations were conducted to analyze the effect of Samarium. Scanning electron microscope (SEM) and Energy dispersive spectroscopy was used to analyzed the microstructure of the alloy. Metallography preparation was prepared for SEM analysis. Corrosion behavior was characterized by cyclic polarization in 3.5% NaCl solution. The results show samarium can change the shape of intermetallic and refine the grains. In addition, samarium makes better pitting resistance and exhibits a tendency for uniform corrosion. It is indicated by the loop reduction (AEpit-prot). Current density increased as an effect of samarium addition from 6x10~(-5) Ampere (Al-5Zn-0.5Cu) to 2.5xl0~(-4) Ampere (Al-5Zn-0.5Cu-0.5Sm). Steel potential protection increased after addition of samarium which is an indication the possibility of Al-Zn-Cu-Sm to be used as low voltage sacrificial anode
机译:牺牲阳极低电压是最新的牺牲阳极,其可以防止由于过度保护而导致的氢气破裂(HIC)的发生。 Al-5n-0.5Cu合金显示出潜力开发为新的牺牲阳极。然而,主要问题是铜制成的晶界中的A12CU金属间金属间。加入钐以改变金属间金属的形状,使其更精细,使腐蚀均匀。进行了几种特征以分析钐的作用。使用扫描电子显微镜(SEM)和能量分散光谱分析合金的微观结构。制备金相制备用于SEM分析。腐蚀行为的特征在于3.5%NaCl溶液中的循环偏振。结果显示钐可以改变金属间化合物的形状并细化晶粒。此外,钐使耐咬合性更好,并且表现出均匀腐蚀的趋势。它由环路减少(AEPIT-PROL)表示。电流密度增大钐除了从6×10〜(-5)安培(铝5Zn-0.5Cu的)到2.5xl0〜(-4)安培(铝5Zn-0.5Cu的-0.5Sm)的效果。添加钐后,钢电位保护增加,这是一种指示Al-Zn-Cu-Sm的可能性,用作低压牺牲阳极

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