Influence of technological system’s rigidity on the dynamics of grinding process of flexible parts

The object of the present study is to investigate the dynamic of plane grinding by the tool with random distribution of abrasive grains, owning random geometric characteristics. The model is based on the consideration of machining system’s dynamical deformable characteristics, which have influence o...

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Main Authors: Voronov Sergey A., Kiselev Igor A., Ma Weidong
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201822602002
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author Voronov Sergey A.
Kiselev Igor A.
Ma Weidong
author_facet Voronov Sergey A.
Kiselev Igor A.
Ma Weidong
author_sort Voronov Sergey A.
collection DOAJ
description The object of the present study is to investigate the dynamic of plane grinding by the tool with random distribution of abrasive grains, owning random geometric characteristics. The model is based on the consideration of machining system’s dynamical deformable characteristics, which have influence on the workpiece’s displacement under grinding process. The excitation of vibrations has significant effects on precision and surface quality, which is especially important in machining spatial parts, such as turbine blades.
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spelling doaj.art-06d0634bd93e4dac89686299717ef7832022-12-21T22:09:04ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012260200210.1051/matecconf/201822602002matecconf_dts2018_02002Influence of technological system’s rigidity on the dynamics of grinding process of flexible partsVoronov Sergey A.Kiselev Igor A.Ma WeidongThe object of the present study is to investigate the dynamic of plane grinding by the tool with random distribution of abrasive grains, owning random geometric characteristics. The model is based on the consideration of machining system’s dynamical deformable characteristics, which have influence on the workpiece’s displacement under grinding process. The excitation of vibrations has significant effects on precision and surface quality, which is especially important in machining spatial parts, such as turbine blades.https://doi.org/10.1051/matecconf/201822602002
spellingShingle Voronov Sergey A.
Kiselev Igor A.
Ma Weidong
Influence of technological system’s rigidity on the dynamics of grinding process of flexible parts
MATEC Web of Conferences
title Influence of technological system’s rigidity on the dynamics of grinding process of flexible parts
title_full Influence of technological system’s rigidity on the dynamics of grinding process of flexible parts
title_fullStr Influence of technological system’s rigidity on the dynamics of grinding process of flexible parts
title_full_unstemmed Influence of technological system’s rigidity on the dynamics of grinding process of flexible parts
title_short Influence of technological system’s rigidity on the dynamics of grinding process of flexible parts
title_sort influence of technological system s rigidity on the dynamics of grinding process of flexible parts
url https://doi.org/10.1051/matecconf/201822602002
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AT kiselevigora influenceoftechnologicalsystemsrigidityonthedynamicsofgrindingprocessofflexibleparts
AT maweidong influenceoftechnologicalsystemsrigidityonthedynamicsofgrindingprocessofflexibleparts