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Substrate Effect on the High-Temperature Oxidation Behavior of a Pt-Modified Aluminide Coating. Part I: Influence of the Initial Chemical Composition of the Coating Surface

机译:基材对Pt改性铝化物涂层高温氧化行为的影响。第一部分:涂层表面初始化学成分的影响

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The effect of substrate composition on the oxidation behavior of the industrial NiPtAl coating RT22 TM was investigated by studying the isothermal and cyclic-oxidation behavior of this coating deposited on three different Ni-base superalloys (CMSX-4 TM , SCB TM and IN792 TM ). Isothermal tests were performed at 900, 1050 and 1150°C for 100 h. Cyclic oxidation was studied at 900°C with a holding time of 300 h for up to 52 cycles (i.e, 15,600 h at 900°C). Thermogravimetric analysis (TGA), X-ray diffraction (XRD), microstructural and analytical investigations using scanning-electron microscopy (SEM) and transmission-electron microscopy (TEM), both equipped with energy-dispersive X-ray spectroscopy (EDS) were performed to characterize the oxidation behavior of the systems studied. An effect of the superalloy substrate was observed and related to the initial chemical composition of the coating surface which depends on the superalloy and the associated heat treatments. The effect of the substrate’s alloying elements is discussed. Particularly the influence of Ti and Ta that formed rutile-type oxides inducing oxide-scale cracking and spallation. The excellent resistance to cyclic oxidation of the coating systems studied at 900°C was also demonstrated from very long duration tests of 15,600 h.
机译:通过研究沉积在三种不同镍基高温合金(CMSX-4 TM 上的该涂层的等温和循环氧化行为,研究了基材组成对工业NiPtAl涂层RT22 TM的氧化行为的影响。 >,SCB TM 和IN792 TM )。等温测试在900、1050和1150°C下进行100小时。在900°C的温度下研究了300小时的循环氧化长达52个循环(即900°C下的15,600h)。进行了热重分析(TGA),X射线衍射(XRD),使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)的显微结构和分析研究,两者均配备了能量色散X射线光谱(EDS)。以表征所研究系统的氧化行为。观察到了超级合金基底的作用,该作用与涂层表面的初始化学组成有关,该初始化学组成取决于超级合金和相关的热处理。讨论了基材合金元素的作用。尤其是形成金红石型氧化物的Ti和Ta的影响诱导了氧化皮的开裂和剥落。在15600小时的长时间测试中也证明了在900°C下研究的涂料体系具有出色的耐循环氧化性。

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