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Effect of Cycle Frequency on High Temperature Oxidation Behavior of Alumina-forming Coatings Used for Industrial Gas Turbine Blades

机译:循环频率对工业燃气轮机叶片用氧化铝成膜层高温氧化行为的影响

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摘要

Oxidation kinetics of platinum modified aluminide and overlay coatings on nickel base superalloys were investigated. Isothermal oxidation tests were carried out at 1050°C in synthetic air. Cyclic oxidation tests were performed with 2 cycle frequencies :ud- Short term cycles : 1h dwells at 1050°C in synthetic air ×1800 cyclesud- Long term cycles : 300h dwells at 1050°C in laboratory air × 6 cycles (experiment planned to totalize at least 10 000 hours at high temperature)udThe mass gain curves point out a large effect of the cycle frequency at 1050°C for overlay NiCoCrAlYTa coating whereas the effect is less significant for Pt-modified nickel aluminide coating. Scanning electron microscopy combined with energy dispersive X-ray spectroscopy was used to evaluate the effect of cycle frequency on microstructural evolution. A simple statistical spalling model [1,2], assuming that the parabolic rate constant kp and the spalling probability p are constant, is tentatively applied and discussed in view of the microstructural evolution complexity.
机译:研究了铂改性的铝化物和镍基高温合金表面涂层的氧化动力学。等温氧化测试是在1050°C的合成空气中进行的。循环氧化测试以2个循环频率进行: ud-短期循环:在1050°C的合成空气中停留1h×1800次循环 ud-长期循环:在1050°C的实验室空气中停留300h×6个循环(实验计划在高温下总共累积至少10000小时) ud质量增益曲线指出,对于1050 NiC的NiCoCrAlYTa覆盖涂层,循环频率的影响很大,而对Pt改性的铝化镍涂层的影响较小。扫描电子显微镜结合能量色散X射线光谱法用于评估循环频率对微观结构演变的影响。假定抛物线速率常数kp和散裂概率p恒定,一个简单的统计散裂模型[1,2]鉴于微观结构演化的复杂性而被试探性地应用和讨论。

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