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Microstructure and Isothermal Oxidation of Ir–Rh Spark Plug Electrodes

机译:Ir–Rh火花塞电极的组织和等温氧化

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High-temperature oxidation tests were performed on pure iridium, rhodium, and the iridium alloys, IrRh10, IrRh25, and IrRh40, at 1100 °C in a stable air environment for 60 h. The results of the oxidation were analyzed by X-ray photoelectron spectroscopy (XPS). Microstructural changes of the Ir–Rh alloys were characterized by scanning electron microscopy (SEM). XPS analysis results show that the main oxide of the Ir–Rh alloy in a 1100 °C environment was Rh 2 O 3 , and SEM analysis shows that the surfaces of the Ir–Rh alloys after oxidation formed both linear and ellipse-shaped corrosion pits, and had the same direction with the wire-drawing process. The oxidation behavior of Ir–Rh alloys, including the mass change, the reason for the mass loss, and the role of Rh in improving oxidation resistance performance, are discussed.
机译:对纯铱,铑和铱合金IrRh10,IrRh25和IrRh40进行了高温氧化试验,在稳定的空气环境中于1100°C进行了60 h。通过X射线光电子能谱(XPS)分析了氧化的结果。 Ir-Rh合金的显微组织变化通过扫描电子显微镜(SEM)表征。 XPS分析结果表明,在1100°C的环境中Ir-Rh合金的主要氧化物为Rh 2 O 3,而SEM分析表明,氧化后的Ir-Rh合金表面既形成了线性腐蚀也形成了椭圆形腐蚀坑,并且与拉丝过程的方向相同。讨论了Ir-Rh合金的氧化行为,包括质量变化,质量损失的原因以及Rh在改善抗氧化性能中的作用。

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