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High-temperature oxidation of nickel-based alloys and estimation of the adhesion strength of resulting oxide layers

机译:镍基合金的高温氧化和所得氧化物层的粘附强度估计

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摘要

The kinetics of isothermal oxidation (1100°C) of commercial nickel-based alloys with different content of sulfur (0.22–3.2 wt ppm) is studied. The adhesion strength in a metal/oxide system is estimated as a function of sulfur content and duration of high-temperature exposure. The scratch-test technique is proposed to quantitatively estimate the work of adhesion of resulting oxide films. It is found that the film microstructure is composed of an inner α-Al2O3 layer and an outer NiAl2O4 spinel layer, which are separated by discrete inclusions of TiO2. Residual stresses in the oxide film are experimentally determined by X-ray diffraction. spinel layer, which are separated by discrete inclusions of TiO2. Residual stresses in the oxide film are experimentally determined by X-ray diffraction
机译:研究了不同硫含量(0.22–3.2 wt ppm)的商业镍基合金的等温氧化(1100℃)动力学。估计金属/氧化物系统中的粘合强度是硫含量和高温暴露时间的函数。提出了划痕测试技术以定量估计所得氧化膜的粘附功。发现膜的微观结构由内部的α-Al2O3层和外部的NiAl2O4尖晶石层组成,它们之间被离散的TiO2夹杂物隔开。氧化膜中的残余应力通过X射线衍射实验确定。尖晶石层,由不连续的TiO2夹杂物隔开。通过X射线衍射实验确定氧化膜中的残余应力

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