Study of Cutting Efficiency of CNC Milling Machine

碩士 === 國立彰化師範大學 === 電機工程學系 === 98 === Abstract High speed technology is the trend of tool machine development, including high speed machining(HSM) and high speed feed (HSF), which are both high speed processing. The so called high speed processing is to combine the technology of HSM, HSF and low ra...

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Main Author: 翁木原
Other Authors: 魏忠必
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/68359544786850671607
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spelling ndltd-TW-098NCUE54420622016-04-20T04:17:32Z http://ndltd.ncl.edu.tw/handle/68359544786850671607 Study of Cutting Efficiency of CNC Milling Machine CNC銑床切削效率之研究 翁木原 碩士 國立彰化師範大學 電機工程學系 98 Abstract High speed technology is the trend of tool machine development, including high speed machining(HSM) and high speed feed (HSF), which are both high speed processing. The so called high speed processing is to combine the technology of HSM, HSF and low radial/axial cutting depth to reach the precision of only few µm. High speed machining and feed are important technologies to improve productivity efficiency by high speed spindle and offering. The thesis aims to research on effects of different cutting processes by high carbon S50C-type steel and middle carbon P5-type steel of disposable blade to compare different cutting and offering speed. The cutting characteristic under different cutting and offering speed is investigated to find out better cutting process condition. Different cutting forces, the wear of blade and the type of cutting are compared in the study. Besides, the efficiency and surface coarse roughness of the refinement piece under high speed cutting is examined. After experiment, it can be found that, by decreasing the force of the cutting blade, the surface brightness of the working piece can be improved, thus better cutting refinement can be obtained. Moreover, the cutting of middle carbon P5-type steel presents bad cutting strips, while the cutting of high carbon S50C-type steel presents better cutting conditions. 魏忠必 蕭瑛星 2010 學位論文 ; thesis 71 zh-TW
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language zh-TW
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description 碩士 === 國立彰化師範大學 === 電機工程學系 === 98 === Abstract High speed technology is the trend of tool machine development, including high speed machining(HSM) and high speed feed (HSF), which are both high speed processing. The so called high speed processing is to combine the technology of HSM, HSF and low radial/axial cutting depth to reach the precision of only few µm. High speed machining and feed are important technologies to improve productivity efficiency by high speed spindle and offering. The thesis aims to research on effects of different cutting processes by high carbon S50C-type steel and middle carbon P5-type steel of disposable blade to compare different cutting and offering speed. The cutting characteristic under different cutting and offering speed is investigated to find out better cutting process condition. Different cutting forces, the wear of blade and the type of cutting are compared in the study. Besides, the efficiency and surface coarse roughness of the refinement piece under high speed cutting is examined. After experiment, it can be found that, by decreasing the force of the cutting blade, the surface brightness of the working piece can be improved, thus better cutting refinement can be obtained. Moreover, the cutting of middle carbon P5-type steel presents bad cutting strips, while the cutting of high carbon S50C-type steel presents better cutting conditions.
author2 魏忠必
author_facet 魏忠必
翁木原
author 翁木原
spellingShingle 翁木原
Study of Cutting Efficiency of CNC Milling Machine
author_sort 翁木原
title Study of Cutting Efficiency of CNC Milling Machine
title_short Study of Cutting Efficiency of CNC Milling Machine
title_full Study of Cutting Efficiency of CNC Milling Machine
title_fullStr Study of Cutting Efficiency of CNC Milling Machine
title_full_unstemmed Study of Cutting Efficiency of CNC Milling Machine
title_sort study of cutting efficiency of cnc milling machine
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/68359544786850671607
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