Study on Influence of Multi-Parameter Variation of Bladed Disk System on Vibration Characteristics

As the main components of the rotor system of aero-engines and other rotating machinery equipment, the bladed disk system has high requirements on its structure design, safety and stability. Taking the rotor disk system of aero-engines as the research object, modal calculation of the rotor disk syst...

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Main Authors: Honggang Pan, Yunshi Wu, Tianyu Zhao
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/11/7/3084
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spelling doaj-455e0729fdee47338c34cc507910535a2021-03-30T23:05:16ZengMDPI AGApplied Sciences2076-34172021-03-01113084308410.3390/app11073084Study on Influence of Multi-Parameter Variation of Bladed Disk System on Vibration CharacteristicsHonggang Pan0Yunshi Wu1Tianyu Zhao2School of Energy and Power, Shenyang Institute of Engineering, Shenyang 110136, ChinaSchool of Energy and Power, Shenyang Institute of Engineering, Shenyang 110136, ChinaSchool of Science, Northeastern University, Shenyang 110819, ChinaAs the main components of the rotor system of aero-engines and other rotating machinery equipment, the bladed disk system has high requirements on its structure design, safety and stability. Taking the rotor disk system of aero-engines as the research object, modal calculation of the rotor disk system was based on the group theory algorithm, and using the fine sand movement on the experimental disk to express the disk vibration shape. The experimental vibration mode is used to compare with the finite element calculation results to verify the reliability of the finite element analysis. Study on the effect of dissonance parameter changes on the bladed disk system vibration characteristics concluded that the vibration mode trends of the blisk system and the disc are, basically, consistent. As the mass of the blade increases, the modal frequencies of the entire blisk system gradually decrease, and the amplitude slightly increases. When the mass increases at different parts of the blade, the effect on the modal frequencies of the bladed disk system are not obvious. When the bladed disk system vibrates at low frequency, the disc will not vibrate and each blade will vibrate irregularly. The bladed disk should be avoided to work in this working area for a long time, so as not to cause fatigue damage or even fracture of some blades.https://www.mdpi.com/2076-3417/11/7/3084bladed disk systemmistuningvibration characteristicsgroup theoryfinite element analysis (FEA)
collection DOAJ
language English
format Article
sources DOAJ
author Honggang Pan
Yunshi Wu
Tianyu Zhao
spellingShingle Honggang Pan
Yunshi Wu
Tianyu Zhao
Study on Influence of Multi-Parameter Variation of Bladed Disk System on Vibration Characteristics
Applied Sciences
bladed disk system
mistuning
vibration characteristics
group theory
finite element analysis (FEA)
author_facet Honggang Pan
Yunshi Wu
Tianyu Zhao
author_sort Honggang Pan
title Study on Influence of Multi-Parameter Variation of Bladed Disk System on Vibration Characteristics
title_short Study on Influence of Multi-Parameter Variation of Bladed Disk System on Vibration Characteristics
title_full Study on Influence of Multi-Parameter Variation of Bladed Disk System on Vibration Characteristics
title_fullStr Study on Influence of Multi-Parameter Variation of Bladed Disk System on Vibration Characteristics
title_full_unstemmed Study on Influence of Multi-Parameter Variation of Bladed Disk System on Vibration Characteristics
title_sort study on influence of multi-parameter variation of bladed disk system on vibration characteristics
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2021-03-01
description As the main components of the rotor system of aero-engines and other rotating machinery equipment, the bladed disk system has high requirements on its structure design, safety and stability. Taking the rotor disk system of aero-engines as the research object, modal calculation of the rotor disk system was based on the group theory algorithm, and using the fine sand movement on the experimental disk to express the disk vibration shape. The experimental vibration mode is used to compare with the finite element calculation results to verify the reliability of the finite element analysis. Study on the effect of dissonance parameter changes on the bladed disk system vibration characteristics concluded that the vibration mode trends of the blisk system and the disc are, basically, consistent. As the mass of the blade increases, the modal frequencies of the entire blisk system gradually decrease, and the amplitude slightly increases. When the mass increases at different parts of the blade, the effect on the modal frequencies of the bladed disk system are not obvious. When the bladed disk system vibrates at low frequency, the disc will not vibrate and each blade will vibrate irregularly. The bladed disk should be avoided to work in this working area for a long time, so as not to cause fatigue damage or even fracture of some blades.
topic bladed disk system
mistuning
vibration characteristics
group theory
finite element analysis (FEA)
url https://www.mdpi.com/2076-3417/11/7/3084
work_keys_str_mv AT honggangpan studyoninfluenceofmultiparametervariationofbladeddisksystemonvibrationcharacteristics
AT yunshiwu studyoninfluenceofmultiparametervariationofbladeddisksystemonvibrationcharacteristics
AT tianyuzhao studyoninfluenceofmultiparametervariationofbladeddisksystemonvibrationcharacteristics
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