Efficient tool path generation for five-axis machining of a difficult machined centrifugal impeller

This article presents an efficient tool path generation method for five-axis machining of a difficult machined centrifugal impeller. Geometry of centrifugal impeller is analyzed, and the inherent low efficiency of the machining of difficult machined centrifugal impeller is obtained. The tool path cu...

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Main Authors: Hong-Zhou Fan, Guang Xi
Format: Article
Language:English
Published: SAGE Publishing 2017-10-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814017726484
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spelling doaj-80f187bf8815446cbf07c21be7cb67112020-11-25T02:23:02ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402017-10-01910.1177/1687814017726484Efficient tool path generation for five-axis machining of a difficult machined centrifugal impellerHong-Zhou FanGuang XiThis article presents an efficient tool path generation method for five-axis machining of a difficult machined centrifugal impeller. Geometry of centrifugal impeller is analyzed, and the inherent low efficiency of the machining of difficult machined centrifugal impeller is obtained. The tool path curves which are calculated by the most common iso-parametric method are shown to testify the waste in machining. The new type machining layers are calculated, and the new machining regions are achieved. The new tool path curves in each new machining region are calculated, and they are sparser and triangular. For the inherent low machining efficiency of difficult machined centrifugal impeller, the machining time can be greatly reduced just by the optimizing tool path generation method in this article. Numerical simulation and a real test impeller are presented as the test of the proposed method.https://doi.org/10.1177/1687814017726484
collection DOAJ
language English
format Article
sources DOAJ
author Hong-Zhou Fan
Guang Xi
spellingShingle Hong-Zhou Fan
Guang Xi
Efficient tool path generation for five-axis machining of a difficult machined centrifugal impeller
Advances in Mechanical Engineering
author_facet Hong-Zhou Fan
Guang Xi
author_sort Hong-Zhou Fan
title Efficient tool path generation for five-axis machining of a difficult machined centrifugal impeller
title_short Efficient tool path generation for five-axis machining of a difficult machined centrifugal impeller
title_full Efficient tool path generation for five-axis machining of a difficult machined centrifugal impeller
title_fullStr Efficient tool path generation for five-axis machining of a difficult machined centrifugal impeller
title_full_unstemmed Efficient tool path generation for five-axis machining of a difficult machined centrifugal impeller
title_sort efficient tool path generation for five-axis machining of a difficult machined centrifugal impeller
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2017-10-01
description This article presents an efficient tool path generation method for five-axis machining of a difficult machined centrifugal impeller. Geometry of centrifugal impeller is analyzed, and the inherent low efficiency of the machining of difficult machined centrifugal impeller is obtained. The tool path curves which are calculated by the most common iso-parametric method are shown to testify the waste in machining. The new type machining layers are calculated, and the new machining regions are achieved. The new tool path curves in each new machining region are calculated, and they are sparser and triangular. For the inherent low machining efficiency of difficult machined centrifugal impeller, the machining time can be greatly reduced just by the optimizing tool path generation method in this article. Numerical simulation and a real test impeller are presented as the test of the proposed method.
url https://doi.org/10.1177/1687814017726484
work_keys_str_mv AT hongzhoufan efficienttoolpathgenerationforfiveaxismachiningofadifficultmachinedcentrifugalimpeller
AT guangxi efficienttoolpathgenerationforfiveaxismachiningofadifficultmachinedcentrifugalimpeller
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