Study of finishing surface of end milling toolpath for three-axis machining center

碩士 === 國立臺灣大學 === 機械工程學研究所 === 99 === Surface quality of machined products do not only determines the appearance of the products, but also determines the features of products. Novel three-axis milling CNC machines have advantages of high efficiency, high flexibility, high rigidity and high accuracy....

Full description

Bibliographic Details
Main Authors: Chao-Yen Chiu, 邱肇彥
Other Authors: Yao-Yang Tsai
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/61763450901464115781
id ndltd-TW-099NTU05489084
record_format oai_dc
spelling ndltd-TW-099NTU054890842015-10-16T04:02:51Z http://ndltd.ncl.edu.tw/handle/61763450901464115781 Study of finishing surface of end milling toolpath for three-axis machining center 三軸工具機銑削路徑之精加工表面研究 Chao-Yen Chiu 邱肇彥 碩士 國立臺灣大學 機械工程學研究所 99 Surface quality of machined products do not only determines the appearance of the products, but also determines the features of products. Novel three-axis milling CNC machines have advantages of high efficiency, high flexibility, high rigidity and high accuracy. Therefore, improving the efficiency and quality of the surface finishing by using three-axis CNC milling machine is a essential issue. This study will use a three-axis CNC milling machine to research the finishing oblique surface and curved surface. Considering the toolpath stepover, stepdown, height of scallop, spindle speed, cutting speed, feed rate, tool radius, slope gradient, radius of curvature, end mills and ball end mills effect on the machined surface. The experimental results show that feed rate and spindle speed effect surface roughness in the feed direction. The scallop is caused by toolpath and tool radius, and effect surface roughness in cross feed direction. Ball end mills is easier than end mills to get low surface roughness in oblique surface finishing. Furthermore, the surface roughness of oblique in feed direction made by contour toolpath is better than parallel toolpath. For curved surface finishing, using ball end mills with parallel toolpath will produce surface waviness caused by small shape errors of tool. Surface waviness is related to radius of curvature, and can be removed by second processing. Yao-Yang Tsai 蔡曜陽 2011 學位論文 ; thesis 112 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣大學 === 機械工程學研究所 === 99 === Surface quality of machined products do not only determines the appearance of the products, but also determines the features of products. Novel three-axis milling CNC machines have advantages of high efficiency, high flexibility, high rigidity and high accuracy. Therefore, improving the efficiency and quality of the surface finishing by using three-axis CNC milling machine is a essential issue. This study will use a three-axis CNC milling machine to research the finishing oblique surface and curved surface. Considering the toolpath stepover, stepdown, height of scallop, spindle speed, cutting speed, feed rate, tool radius, slope gradient, radius of curvature, end mills and ball end mills effect on the machined surface. The experimental results show that feed rate and spindle speed effect surface roughness in the feed direction. The scallop is caused by toolpath and tool radius, and effect surface roughness in cross feed direction. Ball end mills is easier than end mills to get low surface roughness in oblique surface finishing. Furthermore, the surface roughness of oblique in feed direction made by contour toolpath is better than parallel toolpath. For curved surface finishing, using ball end mills with parallel toolpath will produce surface waviness caused by small shape errors of tool. Surface waviness is related to radius of curvature, and can be removed by second processing.
author2 Yao-Yang Tsai
author_facet Yao-Yang Tsai
Chao-Yen Chiu
邱肇彥
author Chao-Yen Chiu
邱肇彥
spellingShingle Chao-Yen Chiu
邱肇彥
Study of finishing surface of end milling toolpath for three-axis machining center
author_sort Chao-Yen Chiu
title Study of finishing surface of end milling toolpath for three-axis machining center
title_short Study of finishing surface of end milling toolpath for three-axis machining center
title_full Study of finishing surface of end milling toolpath for three-axis machining center
title_fullStr Study of finishing surface of end milling toolpath for three-axis machining center
title_full_unstemmed Study of finishing surface of end milling toolpath for three-axis machining center
title_sort study of finishing surface of end milling toolpath for three-axis machining center
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/61763450901464115781
work_keys_str_mv AT chaoyenchiu studyoffinishingsurfaceofendmillingtoolpathforthreeaxismachiningcenter
AT qiūzhàoyàn studyoffinishingsurfaceofendmillingtoolpathforthreeaxismachiningcenter
AT chaoyenchiu sānzhóugōngjùjīxiǎnxuēlùjìngzhījīngjiāgōngbiǎomiànyánjiū
AT qiūzhàoyàn sānzhóugōngjùjīxiǎnxuēlùjìngzhījīngjiāgōngbiǎomiànyánjiū
_version_ 1718091527513702400