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首页> 外文期刊>Journal of Materials Engineering and Performance >Evaluation of Microstructural Deterioration for a Directionally Solidified Ni-Based Superalloy by X-ray Computed Tomography
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Evaluation of Microstructural Deterioration for a Directionally Solidified Ni-Based Superalloy by X-ray Computed Tomography

机译:X射线计算机断层扫描评价定向凝固Ni基超合金的微观结构劣化

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摘要

The evaluation of the microstructural deterioration was carried out by x-ray computed tomography for the first-stage blades, manufactured using a directionally solidified Ni-based superalloy (Ni-SA) retired from a land gas turbine, after service. The x-ray computed tomography was used to analyze the whole blade as well as, a segment of the top of blade with the purpose for obtaining results in a micrometer scale, which can be contrasted with the results of microstructural characterization. In order to evaluate the internal deterioration of the component, it was necessary to determine the in-service operation conditions of first-stage blades. Thus, the temperature distribution in the component during the start-up cycle was obtained, considering a transitory regime and using the conjugate heat transfer technique by means of Fluent ANSYS software. Besides, the mechanical stresses present in the component were calculated using finite element method implemented in ANSYS software. The main results of this work identified that the presence of cracking in the blade is associated with the occurrence of creep microcavities and coarsened particles of MC-type carbides, which showed debonding from the gamma-matrix of the Ni-SA. The origin of the cracking was determined to occur in the cooling channels of the component.
机译:通过x射线计算机断层扫描对第一级叶片进行微观结构劣化评估,该叶片使用陆地燃气轮机退役的定向凝固镍基高温合金(Ni-SA)制造,服役后。x射线计算机断层扫描用于分析整个叶片以及叶片顶部的一部分,目的是获得微米级的结果,该结果可以与微观结构表征的结果进行对比。为了评估部件的内部劣化,有必要确定第一级叶片的运行条件。因此,在考虑过渡区的情况下,利用Fluent ANSYS软件的共轭传热技术,获得了启动循环期间部件中的温度分布。此外,使用ANSYS软件中实现的有限元方法计算了组件中存在的机械应力。这项工作的主要结果表明,叶片中裂纹的存在与蠕变微腔和MC型碳化物粗化颗粒的出现有关,这表明从Ni-SA的γ基体上脱粘。确定裂纹起源于部件的冷却通道。

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