首页> 外文会议>Asian Pacific Conference on Fracture and Strength;APCFS; 20061122-25;20061122-25; Sanya(CN);Sanya(CN) >Segregation of Alloying Elements of Directionally Solidified Nickel Based Superalloy CM247LC during Creep Degradation Process
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Segregation of Alloying Elements of Directionally Solidified Nickel Based Superalloy CM247LC during Creep Degradation Process

机译:蠕变降解过程中定向凝固镍基高温合金CM247LC合金元素的偏析

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The mechanism of the degradation process of nickel based superalloy CM247LC under creep loading was analyzed by considering the microscopic chemical composition of the material such as phase boundary of γ and γ' phases. In this study, a Directionally Solidified (DS) nickel-based superalloys CM247LC was used as test specimens. The creep test was performed at 900℃ under an uni-axial stress of 216 MPa. Each specimen was creep ruptured and interrupted at different hours and then analyzed. The change of chemical composition around the interface analyzed precisely by used Auger Electron Spectroscopy (AES). It was found that the local enrichment or lack of cobalt and chromium was found at the interface. This tendency was not found in the stress free area. Since chromium is the well-known element that dominates the degradation of this material, such an enrichment or lack of cobalt and chromium may play an important role for forming a crack propagation path near the interface. This local segregation should be analyzed further to make clear degradation mechanism of this material.
机译:通过考虑材料的微观化学成分,例如γ相和γ′相的相界,分析了蠕变载荷下镍基高温合金CM247LC的降解过程机理。在这项研究中,定向凝固(DS)镍基高温合金CM247LC被用作试样。蠕变试验是在900℃,216 MPa的单轴应力下进行的。每个样本在不同的时间蠕变破裂并中断,然后进行分析。通过使用俄歇电子能谱(AES)精确分析了界面周围化学成分的变化。发现在界面处发现局部富集或缺乏钴和铬。在无应力区域中未发现这种趋势。由于铬是控制这种材料降解的众所周知的元素,因此钴和铬的这种富集或缺乏可能对在界面附近形成裂纹扩展路径起重要作用。应该进一步分析这种局部偏析,以弄清这种材料的降解机理。

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