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Static and dynamic aspects of coupling between creep behavior and oxidation on MC2 single crystal superalloy at 1150 °C

机译:1150°C下MC2单晶高温合金的蠕变行为与氧化耦合的静态和动态方面

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摘要

Creep tests were performed on thin wall specimens made of MC2 single crystal superalloy at 1150 °C and under controlled atmosphere. The results highlight the deleterious oxidation effect on creep properties. The assumption that oxidation leads to a non-load-bearing affected zone is insufficient to explain the difference in creep rate that was noticed between tests performed under synthetic air and under hydrogenated argon, and cannot explain the decrease of the strain rate during the tests that were carried out with a change of atmosphere from synthetic air to hydrogenated argon. On the other hand, these experimental results are consistent with vacancy injection due to partial cationicudoxidation, which accelerates the creep rate by promoting creep mechanisms controlled by diffusion.udThe anionic protective alumina scale formed under hydrogenated argon prevents this vacancy flux.
机译:对由MC2单晶高温合金制成的薄壁试样在1150°C和受控气氛下进行了蠕变测试。结果突出了对蠕变性能的有害氧化作用。氧化导致非承重影响区的假设不足以解释在合成空气和氢化氩气下进行的测试之间注意到的蠕变速率差异,并且无法解释在测试期间应变速率的降低。在从合成空气到氢化氩的气氛变化下进行。另一方面,这些实验结果与由于部分阳离子/过氧化引起的空位注入相一致,这通过促进受扩散控制的蠕变机理而加速了蠕变速率。 ud在氢化氩气下形成的阴离子保护氧化铝垢防止了这种空位通量。

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