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Information Journal Paper

Title

OPTIMIZATION OF THE FORGING PROCESS OF AN AEROFOIL BLADE USING THE FINITE ELEMENT ANALYSIS AND RESPONSE SURFACE METHOD

Pages

  35-44

Abstract

 Forging of gas turbine BLADEs needs a close control of the process parameters. These parameters require a suitable OPTIMIZATION method to achieve the best process conditions. This paper presents a hybrid method for the OPTIMIZATION of FORGING process of an aerofoil BLADE. FORGING process of the aerofoil BLADE was simulated using 3-dimentional FINITE ELEMENT method. Preform shape and die parting-line angle are optimized in order to minimize the volume of the unfilled die cavity, material waste, FORGING forces. The overall OPTIMIZATION scheme used in this research work includes a multi-objective approach that is combination of RESPONSE SURFACE and FINITE ELEMENT methods. The results show that the proposed OPTIMIZATION approach accrued to decrease the flash volume and the FORGING force of the aerofoil FORGING process. Therefore the proposed algorithm is a suitable method for OPTIMIZATION of the gas turbine BLADE FORGING processes.

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    APA: Copy

    ALIMIRZALOO, V., & BIGLARI, F.R.. (2015). OPTIMIZATION OF THE FORGING PROCESS OF AN AEROFOIL BLADE USING THE FINITE ELEMENT ANALYSIS AND RESPONSE SURFACE METHOD. INTERNATIONAL JOURNAL OF ADVANCED DESIGN AND MANUFACTURING TECHNOLOGY, 8(1), 35-44. SID. https://sid.ir/paper/644191/en

    Vancouver: Copy

    ALIMIRZALOO V., BIGLARI F.R.. OPTIMIZATION OF THE FORGING PROCESS OF AN AEROFOIL BLADE USING THE FINITE ELEMENT ANALYSIS AND RESPONSE SURFACE METHOD. INTERNATIONAL JOURNAL OF ADVANCED DESIGN AND MANUFACTURING TECHNOLOGY[Internet]. 2015;8(1):35-44. Available from: https://sid.ir/paper/644191/en

    IEEE: Copy

    V. ALIMIRZALOO, and F.R. BIGLARI, “OPTIMIZATION OF THE FORGING PROCESS OF AN AEROFOIL BLADE USING THE FINITE ELEMENT ANALYSIS AND RESPONSE SURFACE METHOD,” INTERNATIONAL JOURNAL OF ADVANCED DESIGN AND MANUFACTURING TECHNOLOGY, vol. 8, no. 1, pp. 35–44, 2015, [Online]. Available: https://sid.ir/paper/644191/en

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