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An improved non-contact dynamic stress measurement method for turbomachinery rotating blades based on fundamental mistuning model

机译:基于基本迷信模型的涡轮机械旋转刀片改进的非接触式动态应力测量方法

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摘要

It is crucially important to monitor the dynamic stress of turbomachinery rotating blades for residual fatigue life prediction and health management, especially for the aircraft engine mistuned blisk. This paper presents an improved non-contact dynamic stress measurement method based on fundamental mistuning model (FMM). The precision of the dynamic stress measurement can be improved at least 4% by the novel method compared with the direct calculation method, and the total stress measurement error is less than 12%. In this paper, only the tuned finite element model, mistuned natural frequency and vibration displacements at each blade tip are needed. The mistuned dynamic stress is expressed in the mistuned modal coordinate system with the stress coordinate base and coordinate values. The numerical and experimental investigations were carried out. This study provides a roadmap to measure the dynamic stress of rotating mistuned blisk, with a strong application potential in the stress online monitoring for the industrial turbomachinery with a blade tip timing (BTT) monitoring system.
机译:对于用于残留疲劳预测和健康管理的涡轮机械旋转刀片的动态应力,特别是对于飞机发动机迷失的眨眼是至关重要的。本文介绍了基于基本迷雾模型(FMM)的改进的非接触动态应力测量方法。与直接计算方法相比,动态应力测量的精度可以通过新方法提高至少4%,总应力测量误差小于12%。在本文中,仅需要调谐有限元模型,每个刀片尖端的雾化自然频率和振动位移。雾化的动态应力在具有应力坐标基础和坐标值的雾化模态坐标系中表示。进行了数值和实验研究。本研究提供了一种衡量扭转扭曲的动态应力的路线图,具有强大的应用潜力,在具有刀片尖端定时(BTT)监测系统的工业涡轮机的应力在线监测中的强大应用潜力。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2020年第10期|106851.1-106851.18|共18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 China State Key Laboratory of Compressor Technology Hefei Anhui 230031 China;

    Beijing Key Laboratory of Health Monitoring and Self-Recovery for High-End Mechanical Equipment Beijing University of Chemical Technology Beijing 100029 China;

    Beijing Key Laboratory of Health Monitoring and Self-Recovery for High-End Mechanical Equipment Beijing University of Chemical Technology Beijing 100029 China;

    Beijing Key Laboratory of Health Monitoring and Self-Recovery for High-End Mechanical Equipment Beijing University of Chemical Technology Beijing 100029 China;

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

    Turbomachinery blade; Dynamic stress; Blade tip timing; Fundamental mistuning model;

    机译:涡轮机械刀片;动态应力;刀片尖端时间;基本迷雾模型;

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