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Research on optimal design for preform of blade forging by topological algorithm combined with numerical simulation and physical experiment
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Jiangsu Provincial Key Laboratory of Advanced Welding Technology,Jiangsu University of Science and Technology,,Jiangsu Provincial Key Laboratory of Advanced Welding Technology,Jiangsu University of Science and Technology

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TG312

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    Abstract:

    Preform design of blade forging has been optimized by utilizing developed topology method in this study. The key techniques of 3D topology optimization include optimization strategy, optimization objectives, element addition and removal criterion, geometry model treatment are given in detail. To fulfill the objective of increased raw material utilizing rate and die-filling rate, a theoretical optimized preform has been obtained after a dozen optimization iterations based on the self-programmed code. Blade forging experiments are implemented to validate the formability of optimized preform form. Aerofoil section profiles extracted from actual forged blade by utilizing laser measure equipment are compared with that from the FE results. The preparation technology of optimized preform is also discussed. A satisfactory optimal result of preform design has been achieved by utilizing the topological method.

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[GUO Pingyi, LU Bin, SHAO Yong. Research on optimal design for preform of blade forging by topological algorithm combined with numerical simulation and physical experiment[J]. Rare Metal Materials and Engineering,2017,46(2):461~467.]
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History
  • Received:April 15,2016
  • Revised:May 24,2016
  • Adopted:June 12,2016
  • Online: April 10,2017
  • Published: