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镍基高温合金单晶涡轮叶片根部的缺陷产生

Defect Creation in the Root of Single-Crystalline Turbine Blades Made of Ni-Based Superalloy.

作者信息

Krawczyk Jacek, Paszkowski Robert, Bogdanowicz Włodzimierz, Hanc-Kuczkowska Aneta, Sieniawski Jan, Terlecki Bartosz

机构信息

Institute of Materials Science, University of Silesia in Katowice, 1A 75 Pulku Piechoty St., 41-500 Chorzów, Poland.

Department of Materials Science, Rzeszow University of Technology, 2 Wincentego Pola St., 35-959 Rzeszów, Poland.

出版信息

Materials (Basel). 2019 Mar 15;12(6):870. doi: 10.3390/ma12060870.

Abstract

An analysis of the defects in the vicinity of the selector⁻root connection plane occurring during the creation of single-crystalline turbine blades made of CMSX-6 Ni-based superalloy was performed. X-ray diffraction topography, scanning electron microscopy, and positron annihilation lifetime spectroscopy were used. Comparing the area of undisturbed axial growth of dendrites to the area of lateral growth concluded that the low-angle boundaries-like (LAB-like) defects were created in the root as a result of unsteady-state lateral growth of some secondary dendrite arms in layers of the root located directly at the selector⁻root connection plane. Additional macroscopic low-angle boundaries (LABs) with higher misorientation angles were created as a result of concave curvatures of liquidus isotherm in platform-like regions near selector⁻root connections. Two kinds of vacancy-type defects, mono-vacancies and vacancy clusters, were determined in relation to the LABs and LAB-like defects. Only mono-vacancies appeared in the areas of undisturbed axial growth. Reasons for the creation of macroscopic LABs and LAB-like defects, and their relationships with vacancy-type defects were discussed.

摘要

对采用CMSX-6镍基高温合金制造单晶涡轮叶片过程中,在选晶器-根部连接平面附近出现的缺陷进行了分析。使用了X射线衍射形貌术、扫描电子显微镜和正电子湮没寿命谱。通过比较枝晶无扰动轴向生长区域和横向生长区域得出,位于选晶器-根部连接平面处根部层中一些二次枝晶臂的非稳态横向生长,导致根部产生了类似小角度晶界(LAB-like)的缺陷。在选晶器-根部连接附近的平台状区域,液相线等温线的凹曲率导致产生了具有更高取向差角的额外宏观小角度晶界(LABs)。确定了与LABs和LAB-like缺陷相关的两种空位型缺陷,即单空位和空位团簇。在无扰动轴向生长区域仅出现了单空位。讨论了宏观LABs和LAB-like缺陷产生的原因及其与空位型缺陷的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffb7/6471304/32d4fd7fd6ad/materials-12-00870-g001.jpg

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