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The degradation behaviour of nickel-based superalloys in the medical waste incineration plant

机译:镍基高温合金在医疗废物焚化厂中的降解行为

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The present work was aimed at analysing the oxidation behaviour of three nickel-based superalloys-Superni 718, Superni 75 and Superni 750, by conducting in-situ study in the secondary chamber of a medical waste incinerator at 800–850°C for 1000 h. It was observed that among the three superalloys, Superni 75 is best suited for such an environment. This was concluded by comparing the weight change after 100 h for total 1000 h, constituting 10 thermal cycles. The morphology of the oxide scale formed on the substrate was analysedusing FE-SEM. The elemental composition was obtained by EDS. The depth profiling of the scale was done using the XPS technique. The chemical composition was also examined by the XRD analysis. The superior oxidation property of Superni 75 is due to the higher Ni-Cr content. The oxidation resistance of the nickel-based superalloys in the aggressive environment of medical waste incinerator is attributed to the presence of chromia oxide-Cr?O? and spinel NiCr?O?.
机译:本工作旨在通过在医疗废物焚化炉的二级腔中于800–850°C下进行1000 h的原位研究来分析三种镍基超级合金Superni 718,Superni 75和Superni 750的氧化行为。 。据观察,在三种高温合金中,Superni 75最适合这种环境。通过比较100小时后总共1000小时的重量变化(构成10个热循环)得出结论。使用FE-SEM分析在基板上形成的氧化皮的形态。通过EDS获得元素组成。规模的深度剖析是使用XPS技术完成的。还通过XRD分析检查了化学组成。 Superni 75的优异氧化性能归因于较高的Ni-Cr含量。镍基高温合金在医疗废物焚化炉的侵蚀性环境中的抗氧化性归因于氧化铬-Cr 2 O 3的存在。和尖晶石NiCr 2 O 3。

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