Experimental and Numerical Analysis of Microstructures and Stress States of Shot-Peened GH4169 Superalloys

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作者
Dianyin Hu
Ye Gao
Fanchao Meng
Jun Song
Rongqiao Wang
机构
[1] Beihang University,School of Energy and Power Engineering
[2] Collaborative Innovation Center of Advanced Aero-Engine,Department of Mining and Materials Engineering
[3] Beijing Key Laboratory of Aero-Engine Structure and Strength,undefined
[4] McGill University,undefined
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摘要
Combining experiments and finite element analysis (FEA), a systematic study was performed to analyze the microstructural evolution and stress states of shot-peened GH4169 superalloy over a variety of peening intensities and coverages. A dislocation density evolution model was integrated into the representative volume FEA model to quantitatively predict microstructural evolution in the surface layers and compared with experimental results. It was found that surface roughness and through-depth residual stress profile are more sensitive to shot-peening intensity compared to coverage due to the high kinetic energy involved. Moreover, a surface nanocrystallization layer was discovered in the top surface region of GH4169 for all shot-peening conditions. However, the grain refinement was more intensified under high shot-peening coverage, under which enough time was permitted for grain refinement. The grain size gradient predicted by the numerical framework showed good agreement with experimental observations.
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页码:1397 / 1409
页数:12
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