Dynamic Modeling and Analysis of the Large-Scale Rotary Machine with Multi-Supporting

The large-scale rotary machine with multi-supporting, such as rotary kiln and rope laying machine, is the key equipment in the architectural, chemistry, and agriculture industries. The body, rollers, wheels, and bearings constitute a chain multibody system. Axis line deflection is a vital parameter...

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Bibliographic Details
Main Authors: Xuejun Li, Yiping Shen, Songlai Wang
Format: Article
Language:English
Published: Hindawi Limited 2011-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.3233/SAV-2010-0573
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spelling doaj-c14651fc6bec46ffabfdf2a521418d202020-11-25T00:25:30ZengHindawi LimitedShock and Vibration1070-96221875-92032011-01-01181-2536210.3233/SAV-2010-0573Dynamic Modeling and Analysis of the Large-Scale Rotary Machine with Multi-SupportingXuejun Li0Yiping Shen1Songlai Wang2Hunan University of Science and Technology, Hunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan, ChinaHunan University of Science and Technology, Hunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan, ChinaHunan University of Science and Technology, Hunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan, ChinaThe large-scale rotary machine with multi-supporting, such as rotary kiln and rope laying machine, is the key equipment in the architectural, chemistry, and agriculture industries. The body, rollers, wheels, and bearings constitute a chain multibody system. Axis line deflection is a vital parameter to determine mechanics state of rotary machine, thus body axial vibration needs to be studied for dynamic monitoring and adjusting of rotary machine. By using the Riccati transfer matrix method, the body system of rotary machine is divided into many subsystems composed of three elements, namely, rigid disk, elastic shaft, and linear spring. Multiple wheel-bearing structures are simplified as springs. The transfer matrices of the body system and overall transfer equation are developed, as well as the response overall motion equation. Taken a rotary kiln as an instance, natural frequencies, modal shape, and response vibration with certain exciting axis line deflection are obtained by numerical computing. The body vibration modal curves illustrate the cause of dynamical errors in the common axis line measurement methods. The displacement response can be used for further measurement dynamical error analysis and compensation. The response overall motion equation could be applied to predict the body motion under abnormal mechanics condition, and provide theory guidance for machine failure diagnosis.http://dx.doi.org/10.3233/SAV-2010-0573
collection DOAJ
language English
format Article
sources DOAJ
author Xuejun Li
Yiping Shen
Songlai Wang
spellingShingle Xuejun Li
Yiping Shen
Songlai Wang
Dynamic Modeling and Analysis of the Large-Scale Rotary Machine with Multi-Supporting
Shock and Vibration
author_facet Xuejun Li
Yiping Shen
Songlai Wang
author_sort Xuejun Li
title Dynamic Modeling and Analysis of the Large-Scale Rotary Machine with Multi-Supporting
title_short Dynamic Modeling and Analysis of the Large-Scale Rotary Machine with Multi-Supporting
title_full Dynamic Modeling and Analysis of the Large-Scale Rotary Machine with Multi-Supporting
title_fullStr Dynamic Modeling and Analysis of the Large-Scale Rotary Machine with Multi-Supporting
title_full_unstemmed Dynamic Modeling and Analysis of the Large-Scale Rotary Machine with Multi-Supporting
title_sort dynamic modeling and analysis of the large-scale rotary machine with multi-supporting
publisher Hindawi Limited
series Shock and Vibration
issn 1070-9622
1875-9203
publishDate 2011-01-01
description The large-scale rotary machine with multi-supporting, such as rotary kiln and rope laying machine, is the key equipment in the architectural, chemistry, and agriculture industries. The body, rollers, wheels, and bearings constitute a chain multibody system. Axis line deflection is a vital parameter to determine mechanics state of rotary machine, thus body axial vibration needs to be studied for dynamic monitoring and adjusting of rotary machine. By using the Riccati transfer matrix method, the body system of rotary machine is divided into many subsystems composed of three elements, namely, rigid disk, elastic shaft, and linear spring. Multiple wheel-bearing structures are simplified as springs. The transfer matrices of the body system and overall transfer equation are developed, as well as the response overall motion equation. Taken a rotary kiln as an instance, natural frequencies, modal shape, and response vibration with certain exciting axis line deflection are obtained by numerical computing. The body vibration modal curves illustrate the cause of dynamical errors in the common axis line measurement methods. The displacement response can be used for further measurement dynamical error analysis and compensation. The response overall motion equation could be applied to predict the body motion under abnormal mechanics condition, and provide theory guidance for machine failure diagnosis.
url http://dx.doi.org/10.3233/SAV-2010-0573
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AT yipingshen dynamicmodelingandanalysisofthelargescalerotarymachinewithmultisupporting
AT songlaiwang dynamicmodelingandanalysisofthelargescalerotarymachinewithmultisupporting
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