A New Approach to Decoupled Non-Resonant Polishing

Two-dimensional vibration-assisted polishing (2D-VAP) is a new polishing approach proposed in recent years, which is considered to be very suitable for the polishing of micro-optical parts and micro-structured surfaces. The advantages of the 2D-VAP approach are as follows: A very high relative veloc...

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Main Authors: Yucheng Li, Xiaoqin Zhou, Guilian Wang, Peiqun Ma, Rongqi Wang
Format: Article
Language:English
Published: MDPI AG 2019-07-01
Series:Micromachines
Subjects:
Online Access:https://www.mdpi.com/2072-666X/10/7/484
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spelling doaj-c0aa616dc06b44afbbbd1a07adc7cf352020-11-25T01:45:41ZengMDPI AGMicromachines2072-666X2019-07-0110748410.3390/mi10070484mi10070484A New Approach to Decoupled Non-Resonant PolishingYucheng Li0Xiaoqin Zhou1Guilian Wang2Peiqun Ma3Rongqi Wang4School of Mechanical and Aerospace Engineering, Jilin University, Changchun 130022, ChinaSchool of Mechanical and Aerospace Engineering, Jilin University, Changchun 130022, ChinaTianjin Key Laboratory for Advanced Mechatronic System Design and Intelligent Control, Tianjin University of Technology, Tianjin 300384, ChinaShanghai Automotive Industry Corporation (Group) Motor Technical Center, Shanghai 201804, ChinaSchool of Mechanical and Aerospace Engineering, Jilin University, Changchun 130022, ChinaTwo-dimensional vibration-assisted polishing (2D-VAP) is a new polishing approach proposed in recent years, which is considered to be very suitable for the polishing of micro-optical parts and micro-structured surfaces. The advantages of the 2D-VAP approach are as follows: A very high relative velocity can be obtained between the workpiece and the polishing tool; the desired motion trajectory can be formed in one polishing cycle. However, there are still some problems to be solved in the 2D-VAP approach, mainly involving: The vibration frequency of the resonant excitation cannot be regulated, which makes it difficult to adapt to the processing demands of different materials; the theoretical model of removal function has been studied in few papers; and motion coupling occurs easily between the horizontal and vertical directions, which affects the trajectory synthesized at the polishing tool. In order to solve these problems, a new approach to decoupled non-resonant polishing is developed in this paper, and its effectiveness is investigated by the theoretical analysis and polishing experiments. Theoretical studies of removal function show that the vibration frequency, vibration amplitude and loading force are proportional to the removal depth. The comparison of experimental and modeling results of removal function show that they have good coherence, and the correctness of the theoretical model of removal function is verified. In addition, the stability experiments of removal function prove that the polishing approach has better stability and is beneficial to the convergence of workpiece surface.https://www.mdpi.com/2072-666X/10/7/484two-dimensional vibration-assisted polishing (2D-VAP)decoupledremoval function
collection DOAJ
language English
format Article
sources DOAJ
author Yucheng Li
Xiaoqin Zhou
Guilian Wang
Peiqun Ma
Rongqi Wang
spellingShingle Yucheng Li
Xiaoqin Zhou
Guilian Wang
Peiqun Ma
Rongqi Wang
A New Approach to Decoupled Non-Resonant Polishing
Micromachines
two-dimensional vibration-assisted polishing (2D-VAP)
decoupled
removal function
author_facet Yucheng Li
Xiaoqin Zhou
Guilian Wang
Peiqun Ma
Rongqi Wang
author_sort Yucheng Li
title A New Approach to Decoupled Non-Resonant Polishing
title_short A New Approach to Decoupled Non-Resonant Polishing
title_full A New Approach to Decoupled Non-Resonant Polishing
title_fullStr A New Approach to Decoupled Non-Resonant Polishing
title_full_unstemmed A New Approach to Decoupled Non-Resonant Polishing
title_sort new approach to decoupled non-resonant polishing
publisher MDPI AG
series Micromachines
issn 2072-666X
publishDate 2019-07-01
description Two-dimensional vibration-assisted polishing (2D-VAP) is a new polishing approach proposed in recent years, which is considered to be very suitable for the polishing of micro-optical parts and micro-structured surfaces. The advantages of the 2D-VAP approach are as follows: A very high relative velocity can be obtained between the workpiece and the polishing tool; the desired motion trajectory can be formed in one polishing cycle. However, there are still some problems to be solved in the 2D-VAP approach, mainly involving: The vibration frequency of the resonant excitation cannot be regulated, which makes it difficult to adapt to the processing demands of different materials; the theoretical model of removal function has been studied in few papers; and motion coupling occurs easily between the horizontal and vertical directions, which affects the trajectory synthesized at the polishing tool. In order to solve these problems, a new approach to decoupled non-resonant polishing is developed in this paper, and its effectiveness is investigated by the theoretical analysis and polishing experiments. Theoretical studies of removal function show that the vibration frequency, vibration amplitude and loading force are proportional to the removal depth. The comparison of experimental and modeling results of removal function show that they have good coherence, and the correctness of the theoretical model of removal function is verified. In addition, the stability experiments of removal function prove that the polishing approach has better stability and is beneficial to the convergence of workpiece surface.
topic two-dimensional vibration-assisted polishing (2D-VAP)
decoupled
removal function
url https://www.mdpi.com/2072-666X/10/7/484
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