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Effect of Dissolved Hydrogen on the Crack Growth Rate and Oxide Film Formation at the Crack Tip of Alloy 600 Exposed to Simulated PWR Primary Water

机译:溶解氢对浅料600裂纹尖端裂纹生长速率和氧化膜形成暴露于模拟PWWL初级水的影响

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The effect of dissolved hydrogen (DH) on primary water stress corrosion cracking of nickel base alloys has been of intense interest for plant operators worldwide. In this study, crack growth rates of Alloy 600 were measured in simulated PWR primary coolant at 330 °C with DH levels of 5, 16, 45 and 75 cc H_2/kg H_2O, respectively. The oxide films formed in the crack tip regions were examined using transmission electron microscopy (TEM). The results show low and similar crack growth rates at all DH levels, without a maximum at 16 cc H_2/kg H_2O. The low DH content favors nickel oxide formation at the crack tip region, whereas the high DH level favors Me_3O_4 type spinel formation. Also, the oxide films were found to grow epitaxially on some metal grain surfaces in the cracks. The possible effects of alloy composition on the oxide films formed, and the effect of DH on the crack growth are briefly discussed.
机译:溶解氢气(DH)对镍基合金初级水应激腐蚀裂纹的影响对植物运营商来说是强烈的兴趣。在该研究中,在330℃下,在330℃下测量合金600的裂纹生长速率,分别为5,16,45和75cc H_2OO的DH水平。使用透射电子显微镜(TEM)检查形成在裂缝尖端区域中的氧化膜。结果显示出所有DH水平的低且相似的裂纹生长速率,而最大值为16 cc h_2 / kg h_2o。低DH含量有利于裂纹尖端区域的镍氧化镍形成,而高达DH水平最受欢迎的ME_3O_4型尖晶石形成。而且,发现氧化物膜在裂缝中的一些金属五表面上外延生长。简要讨论了合金组合物对所形成的氧化膜的可能影响,并讨论DH对裂纹生长的影响。

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