4.6 Article

Grinding force and surface quality in creep feed profile grinding of turbine blade root of nickel-based superalloy with microcrystalline alumina abrasive wheels

期刊

CHINESE JOURNAL OF AERONAUTICS
卷 34, 期 2, 页码 576-585

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cja.2019.11.006

关键词

Creep feed profile grinding; Fir-tree blade root; Grinding force; Single crystal nickel-based superalloy; Surface quality

资金

  1. National Natural Science Foundation of China [51775275]
  2. Funding of Jiangsu Innovation Program for Graduate Education of China [KYCX17_0245]
  3. NUAA of China [BCXJ1704]
  4. Fundamental Research Funds for the Central University of China [NP2018110]
  5. National Science and Technology Major Project
  6. Six Talents Summit Project in Jiangsu Province of China [JXQC002]

向作者/读者索取更多资源

Creep feed profile grinding of single crystal nickel-based superalloy fir-tree blade root forms was conducted using microcrystalline alumina abrasive wheels in this study. The grinding force was significantly influenced by the competition between grinding parameters and workpiece profile, leading to differences in surface quality.
Creep feed profile grinding of the fir-tree blade root forms of single crystal nickel-based superalloy was conducted using microcrystalline alumina abrasive wheels in the present study. The grinding force and the surface quality in terms of surface topography, subsurface microstructure, microhardness and residual stress obtained under different grinding conditions were evaluated comparatively. Experimental results indicated that the grinding force was influenced significantly by the competing predominance between the grinding parameters and the cross-sectional root workpiece profile. In addition, the root workpiece surface, including the root peak and valley regions, was produced with the large difference in surface quality due to the nonuniform grinding loads along the root workpiece profile in normal section. Detailed results showed that the surface roughness, subsurface plastic deformation and work hardening level of the root valley region were higher by up to 25%, 20% and 7% in average than those obtained in the root peak region, respectively, in the current investigation. Finally, the superior parameters were recommended in the creep feed profile grinding of the fir-tree blade root forms. This study is helpful to provide industry guidance to optimize the machining process for the high-valued parts with complicated profiles. (c) 2019 Chinese Society of Aeronautics and Astronautics. Production and hosting by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

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