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Effect of Cathodic Polarization on the Susceptibility to Hydrogen Embrittlement in 5xxx, 6xxx and 7xxx Series Aluminium Alloys

机译:阴极极化对5xxx,6xxx和7xxx系列铝合金中氢脆敏感性的影响

摘要

Aluminium is an interesting material for use in subsea applications due to the combination of low weight, good corrosion resistance and superior low temperature properties. So far, the use of aluminium alloys in offshore applications has mainly been restricted to topside structures. In order to use these alloys in subsea structures and components, there is a need for cathodic protection (CP) to avoid corrosion in contact with more noble metals. CP represents a source of hydrogen, and this may pose a threat to hydrogen embrittlement (HE).In this study the effect of cathodic polarization on the susceptibility to HE in several variants of Al-Mg (5xxx), Al-Mg-Si (6xxx) and Al-Zn-Mg (7xxx) aluminium alloys was investigated. A stepwise loading tensile test with in situ cathodic polarization was performed on hydrogen pre-charged samples and on not pre-charged samples. In addition, reference samples were tensile tested in air. Fracture surfaces were examined using scanning electron microscope (SEM), and reduction of area (RA) measurements were also performed. The planned measurements of hydrogen content and microhardness were not conducted.The results from this study indicate an effect of cathodic polarization on the susceptibility to HE in AA 7108.50, manifested by a decline in average fracture strength (FS) between reference samples and hydrogen pre-charged samples, respectively. Moreover, features associated with transgranular cleavage fractures were revealed from fractography. The EN AW 5083 H321 and EN AW 6082 T6 alloy variants do not seem to be particularly vulnerable to HE, regardless of both composition and thermal history. Minor variations in FS were found between reference samples and hydrogen pre-charged samples, and only ductile features were revealed from the fracture surface examinations. The reduction of area (RA) measurements were not included in the overall assessment of susceptibility to HE due to large inconsistency with the other test results. It should be emphasized that measurement of hydrogen content and execution of experiments in which several parallels of samples are tested are crucial for verification of the findings from this study.
机译:铝由于重量轻,良好的耐腐蚀性和优异的低温性能而成为海底应用中令人感兴趣的材料。迄今为止,在海上应用中铝合金的使用主要限于顶部结构。为了在海底结构和部件中使用这些合金,需要阴极保护(CP)以避免与更多贵金属接触时发生腐蚀。 CP代表氢的来源,可能对氢脆(HE)构成威胁。在这项研究中,阴极极化对Al-Mg(5xxx),Al-Mg-Si(研究了6xxx)和Al-Zn-Mg(7xxx)铝合金。在氢预充样品和未预充样品上进行了带有原位阴极极化的逐步加载拉伸试验。此外,参考样品在空气中进行了拉伸测试。使用扫描电子显微镜(SEM)检查断裂表面,并进行面积减小(RA)测量。未进行计划中的氢含量和显微硬度测量。这项研究的结果表明,阴极极化对AA 7108.50中的HE敏感性具有影响,表现为参考样品与氢前体之间的平均断裂强度(FS)下降。带电样品。此外,通过断层扫描揭示了与经颅卵裂骨折有关的特征。不管成分和热历史如何,EN AW 5083 H321和EN AW 6082 T6合金变体似乎对HE都不特别脆弱。在参考样品和预充氢样品之间,FS的变化很小,并且从断裂表面检查中仅发现了韧性特征。由于与其他测试结果不一致,因此面积减少(RA)测量未包括在对HE的易感性的总体评估中。应当强调的是,氢含量的测量和其中几个平行样品被测试的实验的执行对于验证本研究结果至关重要。

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    Veium Kjetil Fossland;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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