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Evolutionary Design of Machining Fixture Layout for Thin-Walled Structure

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Listed:
  • Yang Liu
  • Shixi Guan
  • Hong Zhao
  • Waner Liu
  • Liancheng Duan
  • Yedian Sha
  • Rui Pang

Abstract

Fixture layout for machining thin-walled structures plays an important role in fixture performance. This work focuses on the optimization design of machining fixture layout including clamp layout and the layout of support heads. A universal optimization methodology that can automatically generate the optimal machining fixture layout is proposed. The optimization of fixture layout is implemented based on the criteria of minimizing maximum deflection of the thin-walled workpiece while remain relatively small torque caused by the clamping tables. An evolutionary algorithm is employed to solve the fixture layout optimization for the optimal solution. The optimal position of the support heads and the layout of clamping tables obtained from this work vary along with the change of cutting force. To validate the proposed optimization methodology, a fixture layout design for a typical thin-walled structure is optimized as an example. The case study demonstrates the application of the proposed approach in the fixture layout design for thin-walled structures, which is beneficial to design an optimal fixture layout.

Suggested Citation

  • Yang Liu & Shixi Guan & Hong Zhao & Waner Liu & Liancheng Duan & Yedian Sha & Rui Pang, 2022. "Evolutionary Design of Machining Fixture Layout for Thin-Walled Structure," Mathematical Problems in Engineering, Hindawi, vol. 2022, pages 1-15, October.
  • Handle: RePEc:hin:jnlmpe:5216966
    DOI: 10.1155/2022/5216966
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