首页> 外文期刊>Corrosion science >High-temperature cyclic oxidation behaviour of Pt-rich γ-γ' coatings. Part Ⅰ: Oxidation kinetics of coated AM1 systems after very long-term exposure at 1100℃
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High-temperature cyclic oxidation behaviour of Pt-rich γ-γ' coatings. Part Ⅰ: Oxidation kinetics of coated AM1 systems after very long-term exposure at 1100℃

机译:富Ptγ-γ'涂层的高温循环氧化行为。第一部分:长时间暴露于1100℃后,涂层的AM1体系的氧化动力学

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摘要

The cyclic oxidation behaviour of several compositions of Pt-rich gamma-gamma' bond-coatings on AM1 superalloy was studied at 1100 degrees C and was compared to the beta-(Niyt)Al coated and uncoated superalloy. AM1 superalloy exhibited an outstanding performance due to an optimized Hf doping and a low sulfur content. The Pt-rich gamma-gamma' bond-coatings showed a better cyclic oxidation resistance than the reference system with a beta-(Ni, Pt)Al coating. Aluminium addition during fabrication was found to be beneficial to improve the oxidation behaviour of Pt-rich gamma-gamma' bond-coatings. Their breakaway resulted from an insufficient aluminium content below the TGO whereas the reference system suffered from rumpling.
机译:在1100摄氏度下研究了AM1高温合金上富Ptγ-γ'键涂层的几种成分的循环氧化行为,并将其与β-(Niyt)Al涂层和未涂层​​的高温合金进行了比较。由于优化的Hf掺杂和低硫含量,AM1超级合金表现出出色的性能。富Pt的γ-γ'键涂层比具有β-(Ni,Pt)Al涂层的参考体系显示出更好的耐循环氧化性。发现在制造过程中添加铝有利于改善富Pt的γ-γ'键涂层的氧化性能。它们的脱离是由于低于TGO的铝含量不足,而参考体系却起皱。

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