On-Line Compensation for Micromilling of High-Aspect-Ratio Straight Thin Walls

In order to improve the machining quality and reduce the dimensional errors of micro high-aspect-ratio straight thin walls, the on-line cutting parameter compensation device has been introduced and corresponding micromilling processes have been investigated. Layered milling strategies for the microm...

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Main Authors: Yang Li, Xiang Cheng, Siying Ling, Guangming Zheng
Format: Article
Language:English
Published: MDPI AG 2021-05-01
Series:Micromachines
Subjects:
Online Access:https://www.mdpi.com/2072-666X/12/6/603
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spelling doaj-111d2cc34d5645f7a06a72fe9cdde32d2021-06-01T00:52:15ZengMDPI AGMicromachines2072-666X2021-05-011260360310.3390/mi12060603On-Line Compensation for Micromilling of High-Aspect-Ratio Straight Thin WallsYang Li0Xiang Cheng1Siying Ling2Guangming Zheng3School of Mechanical Engineering, Shandong University of Technology, Zibo 255000, ChinaSchool of Mechanical Engineering, Shandong University of Technology, Zibo 255000, ChinaSchool of Mechanical Engineering, Dalian University of Technology, Dalian 116024, ChinaSchool of Mechanical Engineering, Shandong University of Technology, Zibo 255000, ChinaIn order to improve the machining quality and reduce the dimensional errors of micro high-aspect-ratio straight thin walls, the on-line cutting parameter compensation device has been introduced and corresponding micromilling processes have been investigated. Layered milling strategies for the micromilling of thin walls have been modeled and simulated for thin walls with different thicknesses based on the finite element method. The radial cutting parameters compensation method is adopted to compensate the thin wall deformation by raising the radial cutting parameters since the thin wall deformation make the actual radial cutting parameters smaller than nominal ones. The experimental results show that the dimensional errors of the thin wall have been significantly reduced after the radial cutting parameter compensation. The average relative dimensional error is reduced from 6.9% to 2.0%. Moreover, the fabricated thin walls keep good shape formation. The reduction of the thin wall dimensional error shows that the simulation results are reliable, which has important guiding significance for the improvement of thin wall machining quality, especially the improvement of dimensional accuracy. The experimental results show that the developed device and the machining strategy can effectively improve the micromilling quality of thin walls.https://www.mdpi.com/2072-666X/12/6/603thin walldeformationdimensional errorcutting force measurementcutting parameter compensation
collection DOAJ
language English
format Article
sources DOAJ
author Yang Li
Xiang Cheng
Siying Ling
Guangming Zheng
spellingShingle Yang Li
Xiang Cheng
Siying Ling
Guangming Zheng
On-Line Compensation for Micromilling of High-Aspect-Ratio Straight Thin Walls
Micromachines
thin wall
deformation
dimensional error
cutting force measurement
cutting parameter compensation
author_facet Yang Li
Xiang Cheng
Siying Ling
Guangming Zheng
author_sort Yang Li
title On-Line Compensation for Micromilling of High-Aspect-Ratio Straight Thin Walls
title_short On-Line Compensation for Micromilling of High-Aspect-Ratio Straight Thin Walls
title_full On-Line Compensation for Micromilling of High-Aspect-Ratio Straight Thin Walls
title_fullStr On-Line Compensation for Micromilling of High-Aspect-Ratio Straight Thin Walls
title_full_unstemmed On-Line Compensation for Micromilling of High-Aspect-Ratio Straight Thin Walls
title_sort on-line compensation for micromilling of high-aspect-ratio straight thin walls
publisher MDPI AG
series Micromachines
issn 2072-666X
publishDate 2021-05-01
description In order to improve the machining quality and reduce the dimensional errors of micro high-aspect-ratio straight thin walls, the on-line cutting parameter compensation device has been introduced and corresponding micromilling processes have been investigated. Layered milling strategies for the micromilling of thin walls have been modeled and simulated for thin walls with different thicknesses based on the finite element method. The radial cutting parameters compensation method is adopted to compensate the thin wall deformation by raising the radial cutting parameters since the thin wall deformation make the actual radial cutting parameters smaller than nominal ones. The experimental results show that the dimensional errors of the thin wall have been significantly reduced after the radial cutting parameter compensation. The average relative dimensional error is reduced from 6.9% to 2.0%. Moreover, the fabricated thin walls keep good shape formation. The reduction of the thin wall dimensional error shows that the simulation results are reliable, which has important guiding significance for the improvement of thin wall machining quality, especially the improvement of dimensional accuracy. The experimental results show that the developed device and the machining strategy can effectively improve the micromilling quality of thin walls.
topic thin wall
deformation
dimensional error
cutting force measurement
cutting parameter compensation
url https://www.mdpi.com/2072-666X/12/6/603
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AT xiangcheng onlinecompensationformicromillingofhighaspectratiostraightthinwalls
AT siyingling onlinecompensationformicromillingofhighaspectratiostraightthinwalls
AT guangmingzheng onlinecompensationformicromillingofhighaspectratiostraightthinwalls
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