Optimization of investment casting process parameters to reduce warpage of turbine blade platform in DD6 alloy

The large warping deformation at platform of turbine blade directly affects the forming precision. In the present research, equivalent warping deformation was firstly presented to describe the extent of deformation at platform. To optimize the process parameters during investment casting to minimize...

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Veröffentlicht in:China foundry 2017-11, Vol.14 (6), p.469-477
Hauptverfasser: Tian, Jia-wei, Bu, Kun, Song, Jin-hui, Tian, Guo-liang, Qiu, Fei, Zhao, Dan-qing, Jin, Zong-li, Li, Yang
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Sprache:eng
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Zusammenfassung:The large warping deformation at platform of turbine blade directly affects the forming precision. In the present research, equivalent warping deformation was firstly presented to describe the extent of deformation at platform. To optimize the process parameters during investment casting to minimize the warping deformation of the platform, based on simulation with Pro CAST, the single factor method, orthogonal test, neural network and genetic algorithm were subsequently used to analyze the influence of pouring temperature, shell mold preheating temperature, furnace temperature and withdrawal velocity on dimensional accuracy of the platform of superalloyDD6 turbine blade. The accuracy of investment casting simulation was verified by measurement of platform at blade casting. The simulation results with the optimal process parameters illustrate that the equivalent warping deformation was dramatically reduced by 21.8% from 0.232295 mm to 0.181698 mm.
ISSN:1672-6421
2365-9459
1672-6421
DOI:10.1007/s41230-017-6063-9