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ISOTHERMAL AND CYCLIC OXIDATION BEHAVIOR OF TURBINE BLADE ALLOYS

机译:涡轮叶片合金的等温和循环氧化行为

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Oxidation behavior of two nickel-based turbine blade alloys has been investigated at three temperatures ranging from 950℃ to 1066℃. Thermogravimetric analysis (TGA), isothermal exposure and cyclic oxidation tests were conducted on GTD-111 (Ni-14.1Cr-3.7W-9.2Co-1.5Mo-3.1Al-4.9Ti-0.02Cb-2.93Ta-0.11C) and IN-738 (Ni-16.0Cr-2.6W-8.1Co-1.6Mo-3.5Al-3.4Ti-0.7Cb-1.6Ta-0.10C) blade alloys. TGA results showed that the oxidation kinetics of both alloys obey parabolic rate laws. The GTD-111 material exhibited a higher parabolic rate constant than IN 738 at all temperatures investigated. Cyclic oxidation behavior of these alloys was compared by plotting the weight change results as a function of thermal cycles. Consistent with the TGA results, cyclic oxidation test results also showed that GTD-111 was less resistant to high-temperature oxidation as compared to the IN-738 alloy. To characterize the oxide scales, a series of short term isothermal oxidation tests were conducted and the spalled scale after oxidation exposure was collected and analyzed by energy-dispersive x-ray analysis (EDX) as a function of aging time. The composition of the scales varied between the alloys. The variation of oxidation behavior of these alloys is discussed with respect to the composition differences between the two alloys.
机译:研究了两种镍基涡轮叶片合金在950℃至1066℃三种温度下的氧化行为。在GTD-111(Ni-14.1Cr-3.7W-9.2Co-1.5Mo-3.1Al-4.9Ti-0.02Cb-2.93Ta-0.11C)和IN上进行了热重分析(TGA),等温暴露和循环氧化测试-738(Ni-16.0Cr-2.6W-8.1Co-1.6Mo-3.5Al-3.4Ti-0.7Cb-1.6Ta-0.10C)刀片合金。 TGA结果表明,两种合金的氧化动力学都遵循抛物线速率规律。在研究的所有温度下,GTD-111材料均表现出比IN 738更高的抛物线速率常数。通过绘制重量变化结果与热循环的关系图,比较了这些合金的循环氧化行为。与TGA结果一致,循环氧化测试结果还显示,与IN-738合金相比,GTD-111对高温氧化的抵抗力更弱。为了表征氧化皮,进行了一系列短期等温氧化测试,收集了氧化暴露后的剥落氧化皮,并通过能量色散X射线分析(EDX)分析了氧化皮的老化时间。合金的鳞片成分不同。关于这两种合金之间的组成差异,讨论了这些合金的氧化行为的变化。

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