首页> 外文学位 >Corrosion and protection of heterogeneous cast Al-Si (356) and Al-Si-Cu-Fe (380) alloys by chromate adn cerium inhibitors.
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Corrosion and protection of heterogeneous cast Al-Si (356) and Al-Si-Cu-Fe (380) alloys by chromate adn cerium inhibitors.

机译:铬酸盐和铈抑制剂对异质铸造Al-Si(356)和Al-Si-Cu-Fe(380)合金的腐蚀和防护。

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摘要

In this study, the localized corrosion and conversion coating on cast alloys 356 (Al-7.0Si-0.3Mg) and 380 (Al-8.5Si-3.5Cu-1.6Fe) were characterized.;The intermetallic phases presence in the permanent mold cast alloy 356 are primary-Si, Al5FeSi, Al8Si6Mg3Fe and Mg2Si. The die cast alloy 380 is rich in Cu and Fe elements. These alloying elements result in formation of the intermetallic phases Al 5FeSi, Al2Cu and Al(FeCuCr) along with primary-Si. The Cu- and Fe-rich IMPS are cathodic with respect to the matrix phase and strongly govern the corrosion behavior of the two cast alloys in an aggressive environment due to formation of local electrochemical cell in their vicinity. Results have shown that corrosion behavior of permanent mould cast alloy 356 is significantly better than the die cast aluminum alloy 380, primarily due to high content of Cu- and Fe-rich phases such as Al2Cu and Al 5FeSi in the latter.;The IMPS also alter the protection mechanism of the cast alloys in the presence of inhibitors in an environment. The presence of chromate in the solution results in reduced cathodic activity on all the phases. Chromate provides some anodic inhibition by increasing pitting potentials and altering corrosion potentials for the phases. Results have shown that performance of CCC was much better on 356 than on 380, primarily due to inhomogeneous and incomplete coating deposition on Cu- and Fe- phases present in alloy 380. XPS and Raman were used to characterize coating deposition on intermetallics. Results show evidence of cyanide complex formation on the intermetallic phases. The presence of this complex is speculated to locally suppress CCC formation.;Formation and breakdown of cerium conversion coatings on 356 and 380 was also analyzed. Results showed that deposition of cerium hydroxide started with heavy precipitation on intermetallic particles with the coatings growing outwards onto the matrix. Electrochemical analysis of synthesized intermetallics compounds in the presence of soluble cerium cations showed that of anodic and cathodic activity was not as strongly inhibited as was observed for chromate ions. Overall cerium conversion coating showed good performance on Al-Si (356) ally, but poor performance on Fe- and Cu-rich alloy (380).
机译:在这项研究中,表征了铸造合金356(Al-7.0Si-0.3Mg)和380(Al-8.5Si-3.5Cu-1.6Fe)上的局部腐蚀和转化膜。;永久铸模中存在金属间相合金356是原生Si,Al5FeSi,Al8Si6Mg3Fe和Mg2Si。压铸合金380富含Cu和Fe元素。这些合金元素导致金属间相Al 5FeSi,Al2Cu和Al(FeCuCr)与初生Si一起形成。富铜和铁的IMPS相对于基体是阴极,由于在其附近形成了局部电化学电池,因此在侵蚀性环境中强烈控制着两种铸造合金的腐蚀行为。结果表明,永久铸模合金356的腐蚀行为明显优于压铸铝合金380,这主要是由于后者中富含Al-Cu和Al 5FeSi的富Cu和Fe的高含量相。在环境中存在抑制剂的情况下改变铸造合金的保护机制。溶液中铬酸盐的存在导致所有相的阴极活性降低。铬酸盐通过增加点蚀电位和改变相的腐蚀电位来提供一些阳极抑制作用。结果表明,CCC的性能在356上比在380上要好得多,这主要是由于在380合金中存在的Cu和Fe相上的涂层沉积不均匀和不完全所致。XPS和Raman用于表征金属间化合物的涂层沉积。结果表明在金属间相上形成氰化物配合物。推测该复合物的存在可以局部抑制CCC的形成。还分析了356和380上铈转化膜的形成和分解。结果表明,氢氧化铈的沉积开始于金属间颗粒上的大量沉淀,涂层向外生长到基体上。在可溶性铈阳离子存在下对合成的金属间化合物进行的电化学分析表明,对阳极和阴极活性的抑制作用不如对铬酸根离子的抑制作用强。总体而言,铈转化膜在Al-Si(356)合金上表现出良好的性能,但是在富铁和富铜合金(380)上却表现不佳。

著录项

  • 作者

    Jain, Syadwad.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 301 p.
  • 总页数 301
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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