MODELING OF THE MACHINE FOR THE BALANCING OF THE ROTOR IN THE ANSYS SOFTWARE COMPLEX

An imbalance appears during the manufacture, operation and maintenance of power equipment. The rotor imbalance arises due to the unbalanced masses of the rotor which leads to the emergence of variable loads on the supports and bending of the rotor. The dynamic balancing of the rotor on the balancing...

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Main Authors: I. R. Tazeyev, S. O. Gaponenko, A. E. Kondratiev, A. N. Zamaliev
Format: Article
Language:English
Published: Kazan State Power Engineering University 2018-08-01
Series:Известия высших учебных заведений: Проблемы энергетики
Subjects:
Online Access:https://www.energyret.ru/jour/article/view/623
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spelling doaj-f4430d99af3c47f58a84451717ca76da2021-07-28T13:16:31ZengKazan State Power Engineering UniversityИзвестия высших учебных заведений: Проблемы энергетики1998-99032018-08-01205-6758310.30724/1998-9903-2018-20-5-6-75-83494MODELING OF THE MACHINE FOR THE BALANCING OF THE ROTOR IN THE ANSYS SOFTWARE COMPLEXI. R. Tazeyev0S. O. Gaponenko1A. E. Kondratiev2A. N. Zamaliev3Kazan state power engineering university (KSPEU).Kazan state power engineering university (KSPEU).Kazan state power engineering university (KSPEU).Kazan state power engineering university (KSPEU).An imbalance appears during the manufacture, operation and maintenance of power equipment. The rotor imbalance arises due to the unbalanced masses of the rotor which leads to the emergence of variable loads on the supports and bending of the rotor. The dynamic balancing of the rotor on the balancing machine is the way to avoid the negative effects of centrifugal forces. The balancing machines in resonant and soft-bearing modes are usually used on modern production. However, these methods of balancing has a number of shortcoming, which can be solved by using the hard-bearing method. For example, an ability of balancing of products with huge imbalance and increasing the accuracy of balancing. Application of soft-bearing balancing method needs to be added in other ways, taking into account high reqiuirments of the power equipment. A model of a hard-bearing balancing machine was designed for balancing rotors and rotating elements of power equipment. The Autodesk Inventor CAD software was used for modeling of the balancing machine and the rotor. The modal analysis was conducted by using the block method of Lanczos on the basis of the ANSYS system. The main assumption during the modal analysis process was that the form of free fluctuations is calculated in relative units and does not allow to determine absolute shifts. The natural oscillation frequencies of the 3D models of the balancing machine bed and the rotor of the gas turbine engine 16M were calculated to determine the informative frequency range that the rotor should be hard-bearing balanced.https://www.energyret.ru/jour/article/view/623hard-bearing balancing machinevibrationnatural oscillation frequenciesunbalancerotorfrequency rangecad autodesk inventoransys
collection DOAJ
language English
format Article
sources DOAJ
author I. R. Tazeyev
S. O. Gaponenko
A. E. Kondratiev
A. N. Zamaliev
spellingShingle I. R. Tazeyev
S. O. Gaponenko
A. E. Kondratiev
A. N. Zamaliev
MODELING OF THE MACHINE FOR THE BALANCING OF THE ROTOR IN THE ANSYS SOFTWARE COMPLEX
Известия высших учебных заведений: Проблемы энергетики
hard-bearing balancing machine
vibration
natural oscillation frequencies
unbalance
rotor
frequency range
cad autodesk inventor
ansys
author_facet I. R. Tazeyev
S. O. Gaponenko
A. E. Kondratiev
A. N. Zamaliev
author_sort I. R. Tazeyev
title MODELING OF THE MACHINE FOR THE BALANCING OF THE ROTOR IN THE ANSYS SOFTWARE COMPLEX
title_short MODELING OF THE MACHINE FOR THE BALANCING OF THE ROTOR IN THE ANSYS SOFTWARE COMPLEX
title_full MODELING OF THE MACHINE FOR THE BALANCING OF THE ROTOR IN THE ANSYS SOFTWARE COMPLEX
title_fullStr MODELING OF THE MACHINE FOR THE BALANCING OF THE ROTOR IN THE ANSYS SOFTWARE COMPLEX
title_full_unstemmed MODELING OF THE MACHINE FOR THE BALANCING OF THE ROTOR IN THE ANSYS SOFTWARE COMPLEX
title_sort modeling of the machine for the balancing of the rotor in the ansys software complex
publisher Kazan State Power Engineering University
series Известия высших учебных заведений: Проблемы энергетики
issn 1998-9903
publishDate 2018-08-01
description An imbalance appears during the manufacture, operation and maintenance of power equipment. The rotor imbalance arises due to the unbalanced masses of the rotor which leads to the emergence of variable loads on the supports and bending of the rotor. The dynamic balancing of the rotor on the balancing machine is the way to avoid the negative effects of centrifugal forces. The balancing machines in resonant and soft-bearing modes are usually used on modern production. However, these methods of balancing has a number of shortcoming, which can be solved by using the hard-bearing method. For example, an ability of balancing of products with huge imbalance and increasing the accuracy of balancing. Application of soft-bearing balancing method needs to be added in other ways, taking into account high reqiuirments of the power equipment. A model of a hard-bearing balancing machine was designed for balancing rotors and rotating elements of power equipment. The Autodesk Inventor CAD software was used for modeling of the balancing machine and the rotor. The modal analysis was conducted by using the block method of Lanczos on the basis of the ANSYS system. The main assumption during the modal analysis process was that the form of free fluctuations is calculated in relative units and does not allow to determine absolute shifts. The natural oscillation frequencies of the 3D models of the balancing machine bed and the rotor of the gas turbine engine 16M were calculated to determine the informative frequency range that the rotor should be hard-bearing balanced.
topic hard-bearing balancing machine
vibration
natural oscillation frequencies
unbalance
rotor
frequency range
cad autodesk inventor
ansys
url https://www.energyret.ru/jour/article/view/623
work_keys_str_mv AT irtazeyev modelingofthemachineforthebalancingoftherotorintheansyssoftwarecomplex
AT sogaponenko modelingofthemachineforthebalancingoftherotorintheansyssoftwarecomplex
AT aekondratiev modelingofthemachineforthebalancingoftherotorintheansyssoftwarecomplex
AT anzamaliev modelingofthemachineforthebalancingoftherotorintheansyssoftwarecomplex
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