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首页> 外文期刊>Archives of Metallurgy and Materials >Some Properties of Platinum and Palladium Modified Aluminide Coatings Deposited by CVD Method on Nickel-Base Superalloys
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Some Properties of Platinum and Palladium Modified Aluminide Coatings Deposited by CVD Method on Nickel-Base Superalloys

机译:CVD法在镍基高温合金上沉积铂和钯改性的铝化物涂层的某些性能

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摘要

In the paper some functional properties (hardness and oxidation resistance) of platinum and palladium modified aluminide coatings deposited by the CVD method on a nickel-based superalloy were determined. The platinum and palladium microlayers, 3 ??m thick were deposited by electroplating process. The heat treatment of electroplating microlayers was performed for 2h at the temperature 1050?°C in an argon atmosphere as to increase adhesion between the coating and the substrate. The low activity CVD aluminizing process of platinum heat treated coatings 3 ??m thick at the 1050?°C for 8h using IonBond equipment was performed. The effects of aluminizing process were verified by the use of an optical microscope (microstructure and coating thickness); a scanning electron microscope and an energy dispersive spectroscope (chemical composition of the surface and cross-section of the modified aluminide coating). The hardness measurements on the cross-section of nonmodified and platinum or palladium modified aluminide coatings were performed. Oxidation tests of modified aluminide coatings at the 1100?°C for 1000 h in the air atmosphere were carried out. On the grounds of the obtained results it was found that the main phase of the platinum modified aluminide coating is ?2-(Ni, Pt)Al. Consequently, the palladium modification of aluminide coating causes the formation of ?2-(Ni, Pd)Al phase. The platinum modified aluminide coating has better oxidation resistance than nonmodified and palladium modified aluminide coating. The XRD analysis of the surface of oxidized platinum modified aluminide coating confirmed the presence of the thermodynamically stable oxide layer Al2O3, that has good protective properties. The oxides of NiAl2O4, Al198Cr0.02O3 and TiO2 were found on the surface of the palladium modified aluminide coating after 1000 h oxidation at the 1100?°C the in the air atmosphere.
机译:在本文中,确定了通过CVD方法在镍基高温合金上沉积的铂和钯改性铝化物涂层的一些功能特性(硬度和抗氧化性)。通过电镀工艺沉积了厚度为3?m的铂和钯微层。电镀微层的热处理在氩气氛中在1050℃的温度下进行了2小时,以增加涂层和基体之间的粘附力。使用IonBond设备在1050°C下对厚度为3?m的铂热处理过的涂层进行了8h的低活性CVD镀铝工艺。通过使用光学显微镜(组织和涂层厚度)验证了渗铝过程的效果;扫描电子显微镜和能量色散光谱仪(改性铝化物涂层的表面和横截面的化学成分)。在未改性的和铂或钯改性的铝化物涂层的横截面上进行硬度测量。在空气中,在1100?C下对改性铝化物涂层进行1000小时的氧化试验。基于获得的结果,发现铂改性的铝化物涂层的主相为α2-(Ni,Pt)Al。因此,铝化物涂层的钯改性导致形成α2-(Ni,Pd)Al相。铂改性的铝化物涂层具有比未改性的和钯改性的铝化物涂层更好的抗氧化性。氧化铂改性的铝化物涂层表面的XRD分析证实,存在热力学稳定的氧化物层Al2O3,具有良好的保护性能。在空气气氛中,在1100℃下氧化1000小时后,在钯改性的铝化物涂层的表面上发现了NiAl2O4,Al198Cr0.02O3和TiO2的氧化物。

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