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Selective Internal Oxidation as a Mechanism for Intergranular Stress Corrosion Cracking of Ni-Cr-Fe Alloys

机译:选择性内部氧化作为Ni-Cr-Fe合金晶间应力腐蚀开裂的机制

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摘要

The mechanism of selective internal oxidation (SIO) for intergranular stress corrosion cracking (IGSCC) of nickel-base alloys has been investigated through a series of experiments using high-purity alloys and a steam environment to control the formation of NiO on the surface. Five alloys (Ni-9Fe, Ni-5Cr, Ni-5Cr-9Fe, Ni-16Cr-9Fe, and Ni-30Cr-9Fe) were used to investigate oxidation and intergranular cracking behavior for hydrogen-to-water vapor partial pressure ratios (PPRs) between 0.001 and 0.9. The Ni-9Fe, Ni-5Cr, and Ni-5Cr-9Fe alloys formed a uniform Ni(OH)2 film at PPRs less than 0.09, and the higher chromium alloys formed chromium-rich oxide films over the entire PPR range studied. Corrosion coupon results show that grain boundary oxides extended for significant depths (>150 nm) below the sample surface for all but the highest Cr containing alloy. Constant extension rate tensile (CERT) test results showed that intergranular cracking varied with PPR and cracking was more pronounced at a PPR value where nonprotective Ni(OH)2 was able to form and a link between the nonprotective Ni(OH)2 film and the formation of grain boundary oxides is suggested. The observation of grain boundary oxides in stressed and unstressed samples as well as the influence of alloy content on IG cracking and oxidation support SIO as a mechanism for IGSCC.
机译:通过一系列使用高纯合金和蒸汽环境控制表面NiO形成的实验,研究了镍基合金晶间应力腐蚀开裂(IGSCC)的选择性内部氧化(SIO)机理。使用五种合金(Ni-9Fe,Ni-5Cr,Ni-5Cr-9Fe,Ni-16Cr-9Fe和Ni-30Cr-9Fe)研究氢与水蒸气分压比的氧化和晶间开裂行为( PPR)在0.001至0.9之间。 Ni-9Fe,Ni-5Cr和Ni-5Cr-9Fe合金在PPR小于0.09时形成均匀的Ni(OH)2 膜,而高铬合金在整个PPR上形成富铬的氧化膜研究范围。腐蚀试样的结果表明,除了含铬最高的合金以外,所有晶界氧化物都在样品表面以下延伸了很深的深度(> 150 nm)。恒定延伸率拉伸(CERT)测试结果表明,晶间开裂随PPR的变化而变化,当PPR值能够形成非保护性Ni(OH)2 且非保护性Ni(OH)之间存在连接时,开裂更明显2 薄膜和晶粒间界氧化物的形成被建议。观察在有应力和无应力样品中的晶界氧化物,以及合金含量对IG裂纹和氧化支持SIO的影响,这是IGSCC的一种机制。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2007年第6期|1244-1259|共16页
  • 作者

    Brent M. Capell; Gary S. Was;

  • 作者单位

    Department of Nuclear Engineering and Radiological Sciences The University of Michigan Ann Arbor MI 48109 USA;

    Department of Nuclear Engineering and Radiological Sciences The University of Michigan Ann Arbor MI 48109 USA;

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  • 正文语种 eng
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