Innovative design of high efficient polishing system for axial symmetric free surface:A newly line polishing method with adjustable pressure distribution

碩士 === 國立中山大學 === 機械與機電工程學系研究所 === 96 === This study aims to develop a precision polishing system with high machining rate efficiency. The system is mainly composed of a loading mechanism, a work piece and a polishing pad with belt-shape. The loading mechanism is to generate a specific pressure di...

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Main Authors: Chang-sheng Hong, 洪常盛
Other Authors: Yaw-Terng Su
Format: Others
Language:zh-TW
Published: 2008
Online Access:http://ndltd.ncl.edu.tw/handle/u87kq3
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spelling ndltd-TW-096NSYS54900472018-06-25T06:05:28Z http://ndltd.ncl.edu.tw/handle/u87kq3 Innovative design of high efficient polishing system for axial symmetric free surface:A newly line polishing method with adjustable pressure distribution 適用於軸對稱自由曲面之高效率拋系統創新設計:新一代可變壓力分布之線拋光法 Chang-sheng Hong 洪常盛 碩士 國立中山大學 機械與機電工程學系研究所 96 This study aims to develop a precision polishing system with high machining rate efficiency. The system is mainly composed of a loading mechanism, a work piece and a polishing pad with belt-shape. The loading mechanism is to generate a specific pressure distribution between the pad and the work surface. Such a pressure distribution is to render the machining rate distribution, along the contact zone between pad and work surface, capable of compensating the work surface error. With the capability of accurately removing the work surface error left by the previous machining method, this polishing system can improve the form precision of work and become an effective high precision machining tool. In this thesis, the relation between the applied loadings and the pressure distribution were established by the finite element method. A linear model described this relation with the applied loading as the input and the desired pressure distribution as the output. The unknown coefficients of the model were then derived from the simulation data by the finite element method. When a desired pressure distribution was given, the applied loadings could be solved from the model by either the simultaneous equation method or the least squared error method. A main issue to investigate in the study was to examine whether a pressure distribution with an arbitrary wavelength spectrum could be obtained by the proposed scheme. A detailed analysis about the effect of wavelength in pressure distribution on the precision of loading estimation was done. Four conclusions could be made from the study. 1.The proposed polishing system can be applied to a free surface with either concave or convex geometrical features 2.The proposed linear model can suggest proper loadings to generate desired pressure distribution with good precision if the wavelength of pressure distribution is large enough. 3.The Shannon sampling theorem can be used to give a qualitative description of the properness of the model in generating a desired pressure distribution. 4.The proposed polishing method has a high machining repeatability when the operating condition is well controlled. Yaw-Terng Su 蘇耀藤 2008 學位論文 ; thesis 94 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立中山大學 === 機械與機電工程學系研究所 === 96 === This study aims to develop a precision polishing system with high machining rate efficiency. The system is mainly composed of a loading mechanism, a work piece and a polishing pad with belt-shape. The loading mechanism is to generate a specific pressure distribution between the pad and the work surface. Such a pressure distribution is to render the machining rate distribution, along the contact zone between pad and work surface, capable of compensating the work surface error. With the capability of accurately removing the work surface error left by the previous machining method, this polishing system can improve the form precision of work and become an effective high precision machining tool. In this thesis, the relation between the applied loadings and the pressure distribution were established by the finite element method. A linear model described this relation with the applied loading as the input and the desired pressure distribution as the output. The unknown coefficients of the model were then derived from the simulation data by the finite element method. When a desired pressure distribution was given, the applied loadings could be solved from the model by either the simultaneous equation method or the least squared error method. A main issue to investigate in the study was to examine whether a pressure distribution with an arbitrary wavelength spectrum could be obtained by the proposed scheme. A detailed analysis about the effect of wavelength in pressure distribution on the precision of loading estimation was done. Four conclusions could be made from the study. 1.The proposed polishing system can be applied to a free surface with either concave or convex geometrical features 2.The proposed linear model can suggest proper loadings to generate desired pressure distribution with good precision if the wavelength of pressure distribution is large enough. 3.The Shannon sampling theorem can be used to give a qualitative description of the properness of the model in generating a desired pressure distribution. 4.The proposed polishing method has a high machining repeatability when the operating condition is well controlled.
author2 Yaw-Terng Su
author_facet Yaw-Terng Su
Chang-sheng Hong
洪常盛
author Chang-sheng Hong
洪常盛
spellingShingle Chang-sheng Hong
洪常盛
Innovative design of high efficient polishing system for axial symmetric free surface:A newly line polishing method with adjustable pressure distribution
author_sort Chang-sheng Hong
title Innovative design of high efficient polishing system for axial symmetric free surface:A newly line polishing method with adjustable pressure distribution
title_short Innovative design of high efficient polishing system for axial symmetric free surface:A newly line polishing method with adjustable pressure distribution
title_full Innovative design of high efficient polishing system for axial symmetric free surface:A newly line polishing method with adjustable pressure distribution
title_fullStr Innovative design of high efficient polishing system for axial symmetric free surface:A newly line polishing method with adjustable pressure distribution
title_full_unstemmed Innovative design of high efficient polishing system for axial symmetric free surface:A newly line polishing method with adjustable pressure distribution
title_sort innovative design of high efficient polishing system for axial symmetric free surface:a newly line polishing method with adjustable pressure distribution
publishDate 2008
url http://ndltd.ncl.edu.tw/handle/u87kq3
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