Wear characteristics of Ⅴ shape diamond tool for micro prism pattern with Al alloys

The ultra-precision machining process using a single crystal diamond tool has been mainly used for machining molds of optical components.Since the micro patterns of various shapes having excellent surface roughness can be machined by using ultra-precision machine tools,the micro pattern on a large l...

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Published inTransactions of Nonferrous Metals Society of China Vol. 22; no. S3; pp. 769 - 774
Main Authors PARK, Eun-Suk, JE, Tae-Jin, CHOI, Hwan-Jin, JEON, Eun-Chae, KANG, Myung-Chang
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.12.2012
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Abstract The ultra-precision machining process using a single crystal diamond tool has been mainly used for machining molds of optical components.Since the micro patterns of various shapes having excellent surface roughness can be machined by using ultra-precision machine tools,the micro pattern on a large light guide plate (LGP) is mainly machined using a diamond tool.The tool wear occurs due to long machining distances and time while machining a large-area LGP mold.The deformation and dimensional error of micro pattern are caused by tool wear,as a result,the light efficiency of LGP declines.The characteristics of tool wear should be analyzed in order to precisely machine large-area LGP mold from all sorts of materials.The experiments were performed in order to compare wear characteristics of a V90° diamond tool using Al3003,5052,6061 and 7075.The prism pattern of depth 10 μm was machined in order to analyze characteristics of tool wear according to machining distances (0.5,1 and 1.5 km).The effects of tool wear on pattern shape were analyzed by applying overlapped cutting depths (Rough machining is (10+8+7) μm and Finish machining is (5+3+2+1) μm) by continuously machining a prism pattern of W shape of 25 μm in depth.
AbstractList The ultra-precision machining process using a single crystal diamond tool has been mainly used for machining molds of optical components.Since the micro patterns of various shapes having excellent surface roughness can be machined by using ultra-precision machine tools,the micro pattern on a large light guide plate (LGP) is mainly machined using a diamond tool.The tool wear occurs due to long machining distances and time while machining a large-area LGP mold.The deformation and dimensional error of micro pattern are caused by tool wear,as a result,the light efficiency of LGP declines.The characteristics of tool wear should be analyzed in order to precisely machine large-area LGP mold from all sorts of materials.The experiments were performed in order to compare wear characteristics of a V90° diamond tool using Al3003,5052,6061 and 7075.The prism pattern of depth 10 μm was machined in order to analyze characteristics of tool wear according to machining distances (0.5,1 and 1.5 km).The effects of tool wear on pattern shape were analyzed by applying overlapped cutting depths (Rough machining is (10+8+7) μm and Finish machining is (5+3+2+1) μm) by continuously machining a prism pattern of W shape of 25 μm in depth.
Author Eun-Suk PARK Tae-Jin JE Hwan-Jin CHOI Eun-Chae JEON Myung-Chang KANG
AuthorAffiliation Nano-Mechatronics,University of Science & Technology Division of Nano-Mechanical Systems,Korea Institute of Machinery and Materials National Core Research Center for Hybrid Materials Solution,Pusan National University
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Cites_doi 10.1016/S1003-6326(08)60130-2
10.1016/S1003-6326(07)60162-9
10.1016/S0043-1648(03)00105-4
10.1016/j.jmatprotec.2006.03.138
10.1016/S0924-0136(03)00751-9
10.1016/S1003-6326(11)61057-1
10.1016/S1003-6326(11)60961-8
10.13066/kspm.2016.11.3.81
10.1016/S0007-8506(07)62888-1
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Keywords planer
diamond tool wear
micro prism pattern
Al alloys
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Notes The ultra-precision machining process using a single crystal diamond tool has been mainly used for machining molds of optical components.Since the micro patterns of various shapes having excellent surface roughness can be machined by using ultra-precision machine tools,the micro pattern on a large light guide plate (LGP) is mainly machined using a diamond tool.The tool wear occurs due to long machining distances and time while machining a large-area LGP mold.The deformation and dimensional error of micro pattern are caused by tool wear,as a result,the light efficiency of LGP declines.The characteristics of tool wear should be analyzed in order to precisely machine large-area LGP mold from all sorts of materials.The experiments were performed in order to compare wear characteristics of a V90° diamond tool using Al3003,5052,6061 and 7075.The prism pattern of depth 10 μm was machined in order to analyze characteristics of tool wear according to machining distances (0.5,1 and 1.5 km).The effects of tool wear on pattern shape were analyzed by applying overlapped cutting depths (Rough machining is (10+8+7) μm and Finish machining is (5+3+2+1) μm) by continuously machining a prism pattern of W shape of 25 μm in depth.
Eun-Suk PARK 1,2,Tae-Jin JE 1,2,Hwan-Jin CHOI 1,2,Eun-Chae JEON 2,Myung-Chang KANG 3 1.Nano-Mechatronics,University of Science &Technology,Daejeon 305-350,Korea;2.Division of Nano-Mechanical Systems,Korea Institute of Machinery and Materials,Daejeon 305-343,Korea;3.National Core Research Center for Hybrid Materials Solution,Pusan National University,Busan 609-735,Korea
43-1239/TG
diamond tool wear;Al alloys;micro prism pattern;planer
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PublicationTitle Transactions of Nonferrous Metals Society of China
PublicationTitleAlternate Transactions of Nonferrous Metals Society of China
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Publisher Elsevier Ltd
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Snippet The ultra-precision machining process using a single crystal diamond tool has been mainly used for machining molds of optical components.Since the micro...
The ultra-precision machining process using a single crystal diamond tool has been mainly used for machining molds of optical components. Since the micro...
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SubjectTerms Al alloys
alloys
diamond
diamond tool wear
micro
micro prism pattern
pattern
planer
prism
wear
Title Wear characteristics of Ⅴ shape diamond tool for micro prism pattern with Al alloys
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