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Automated aviation sealant gluing process modelling and parametric optimization: A dynamic mesh-coupled multiphase flow framework

  • Kuangqing Hu
  • , Wei Han
  • , Yinghao Wu
  • , Hui Cheng
  • , Shunuan Liu
  • Northwestern Polytechnical University Xian
  • AVIC XAC Commercial Aircraft Co.,Ltd.

科研成果: 期刊稿件会议文章同行评审

摘要

Modern aerospace systems demand enhanced fuel tank sealing integrity and assembly efficiency, where automatic gluing plays a pivotal role in optimizing both process effectiveness and gluing quality. However, aviation-grade sealants present unique challenges due to their elevated viscosity, time-environment-dependent rheological properties, and complex flow deformation characteristics. Conventional experimental approaches prove prohibitively expensive for parameter optimization while failing to capture dynamic rheological responses during gluing processes. This investigation establishes a computational framework integrating multiphase flow theory with dynamic mesh methodology to simulate the process of automatic gluing, systematically examining flow behavior under various operational parameters and elucidating their impacts on surface morphology. Results reveal that the gluing velocity primarily governs the sealant morphology width, while glue supply predominantly affects surface smoothness and sealant morphology height. A more stable gluing quality can be obtained by the combination of the parameters of gluing velocity of 0.001 m/s, glue supply of 0.17 g/s, and gluing velocity of 0.002m/s, glue supply of 0.5 g/s.

源语言英语
期刊论文编号012029
期刊Journal of Physics: Conference Series
3080
1
DOI
出版状态已出版 - 2025
活动11th International Conference on Applied Materials and Manufacturing Technology, ICAMMT 2025 - Changsha, 中国
期限: 11 4月 202513 4月 2025

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