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On-line real-time mistuning identification and model calibration method for rotating blisks based on blade tip timing (BTT)

机译:基于叶片尖端定时(BTT)旋转外语的在线实时迷雾识别和模型校准方法

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摘要

Identifying the mistuning parameters and calibrating the finite element model (FEM) of the mistuned blisk in real-time is a meaningful way to acquire the blisk's dynamic characteristics and predict its stress response. Because of the wearing and other reasons, the blisk's mistuning is changing during the operation. Hence a BTT based rotating-blisk mistuning identification and model calibration (BR-IDC) method in real-time has become a necessity. The rotating effects (stiffening, softening and Coriolis force) are considered in the BR-IDC. The synergistic effect of the mass and stiffness mistuning is analyzed, and the effect is presented by a standard mistuning coefficient. Based on the BR-IDC, the on-line real-time mistuning identification for the rotating blisk is realized. Furthermore, the FEM was calibrated by the identification results. The BR-IDC approach is verified by FEM simulation and experimental work. The precision of the FEM is improved through the calibration.
机译:识别迷信参数并校准迷失的百万型的有限元模型(FEM)实时是一种有意义的方式来获取闪烁的动态特性并预测其应力响应。由于佩戴等原因,眨眼的迷雾在操作期间正在发生变化。因此,基于BTT的旋转钝惰雾化识别和模型校准(BR-IDC)方法实时已成为必需品。在BR-IDC中考虑旋转效果(加强,软化和科里奥利力)。分析了质量和刚度迷雾的协同效应,并通过标准迷迭系数提出了效果。基于BR-IDC,实现了旋转闪烁的在线实时迷信识别。此外,通过鉴定结果校准有限元。通过FEM模拟和实验工作验证BR-IDC方法。通过校准改善了有限元的精度。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2021年第1期|107074.1-107074.20|共20页
  • 作者单位

    Beijing Key Laboratory of Health Monitoring and Self-recovery for High-end Mechanical Equipment Beijing University of Chemical Technology Beijing 100029 PR China;

    Beijing Key Laboratory of Health Monitoring and Self-recovery for High-end Mechanical Equipment Beijing University of Chemical Technology Beijing 100029 PR China Chemical Safety Engineering Research Center of the Ministry of Education Beijing University of Chemical Technology Beijing 100029 PR China;

    Beijing Key Laboratory of Health Monitoring and Self-recovery for High-end Mechanical Equipment Beijing University of Chemical Technology Beijing 100029 PR China;

    Beijing Key Laboratory of Health Monitoring and Self-recovery for High-end Mechanical Equipment Beijing University of Chemical Technology Beijing 100029 PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mistuning identification; Model calibration; Blade tip timing; Digital twin;

    机译:迷信识别;模型校准;刀片尖端时间;数字双胞胎;

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