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Aluminide Thermal Barrier Coating for High Temperature Performance of MAR 247 Nickel Based Superalloy

机译:铝化热屏蔽涂层,适用于347镍基超合金的高温性能

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In this paper, mechanical properties of the as-received and aluminide layer coated MAR 247 nickel based superalloy were examined through creep and fatigue tests. The aluminide layer of 20 μm was obtained through the chemical vapor deposition (CVD) process in the hydrogen protective atmosphere for 8 h at the temperature of 1040 °C and internal pressure of 150 mbar. A microstructure of the layer was characterized using the scanning electron microscopy (SEM) and X-ray Energy Dispersive Spectroscopy (EDS). It was found that aluminide coating improve the high temperature fatigue performance of MAR247 nickel based superalloy at 900 °C significantly. The coated MAR 247 nickel based superalloy was characterized by the stress amplitude response ranging from 350 MPa to 520 MPa, which is twice as large as that for the uncoated alloy.
机译:在本文中,通过蠕变和疲劳试验检查了MAS 247基于镍的超合金的接收和铝化层的机械性能。 通过化学气相沉积(CVD)工艺在氢保护气氛中获得8小时,在1040℃和150毫巴的内部压力下获得20μm的铝化层。 使用扫描电子显微镜(SEM)和X射线能量分散光谱(EDS)表征层的微观结构。 发现铝化涂层显着提高了MAR247镍基超合金的高温疲劳性能。 涂布的MAR 247基镍高温合金的特征在于,应力振幅响应范围为350MPa至520MPa,这是未涂合合金的两倍。

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