Surface textures on cemented carbide cutting tools by micro EDM assisted with high-frequency vibration
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  • 作者:Yan Li ; Jianxin Deng ; Yongsheng Chai…
  • 关键词:Micro EDM ; High ; frequency vibration ; Cutting tool ; Micro holes ; Linear grooves
  • 刊名:The International Journal of Advanced Manufacturing Technology
  • 出版年:2016
  • 出版时间:February 2016
  • 年:2016
  • 卷:82
  • 期:9-12
  • 页码:2157-2165
  • 全文大小:1,669 KB
  • 参考文献:1.Deng JX, Wu Z, Lian YS, Qi T, Cheng J (2012) Performance of carbide tools with textured rake-face filled with solid lubricants in dry cutting processes. Int J Refract Met Hard Mater 30(1):164–172CrossRef
    2.Li B (2012) A review of tool wear estimation using theoretical analysis and numerical simulation technologies. Int J Refract Met Hard Mater 35:143–151CrossRef
    3.Lian YS, Deng JX, Yan GY, Cheng HW, Zhao J (2013) Preparation of tungsten disulfide (WS2) soft-coated nano-textured self-lubricating tool and its cutting performance. Int J Adv Manuf Technol 68(9–12):2033–2042CrossRef
    4.Sugihara T, Enomoto T (2013) Crater and flank wear resistance of cutting tools having micro textured surfaces. Precision Eng-J Int Soc Precision Eng Nanotechnol 37(4):888–896
    5.Moshkovith A, Perfiliev V, Gindin D, Parkansky N, Boxman R, Rapoport L (2007) Surface texturing using pulsed air arc treatment. Wear 263(7–12):1467–1469CrossRef
    6.Koshy P, Tovey J (2011) Performance of electrical discharge textured cutting tools. Cirp Ann-Manufacturing Technol 60(1):153–156CrossRef
    7.Lei S, Devarajan S, Chang Z (2009) A study of micropool lubricated cutting tool in machining of mild steel. J Mater Process Technol 209(3):1612–1620CrossRef
    8.Wakuda M, Yamauchi Y, Kanzaki S, Yasuda Y (2003) Effect of surface texturing on friction reduction between ceramic and steel materials under lubricated sliding contact. Wear 254(3–4):356–363CrossRef
    9.Zhu D, Qu NS, Li HS, Zeng YB, Li DL, Qian SQ (2009) Electrochemical micromachining of microstructures of micro hole and dimple array. Cirp Ann-Manufacturing Technol 58(1):177–180CrossRef
    10.Xu LZ, Pan Y (2014) Electrochemical micromachining using vibrating tool electrode. Int J Adv Manuf Technol 75(5–8):645–650CrossRef
    11.Dumitru G, Romano V, Gerbig Y, Weber HP, Haefke H (2005) Femtosecond laser processing of nitride-based thin films to improve their tribological performance. Appl Phys Mater Sci Process 80(2):283–287CrossRef
    12.Okada A, Kitada R, Okamoto Y, Uno Y (2011) Surface modification of cemented carbide by EB polishing. Cirp Ann-Manufacturing Technol 60(1):575–578CrossRef
    13.Ali MY, Ong AS (2006) Fabricating micromilling tool using wire electro-discharge grinding and focused ion beam sputtering. Int J Adv Manuf Technol 31(5–6):501–508CrossRef
    14.Xin YQ, Den JX, Wu Z, Chen HW (2013) Effect of regular surface textures generated by laser on tribological behavior of Si3N4/TiC ceramic. Appl Surf Sci 265:823–832CrossRef
    15.Voevodin AA, Zabinski JS (2006) Laser surface texturing for adaptive solid lubrication. Wear 261(11–12):1285–1292CrossRef
    16.Simao J, Lee HG, Aspinwall DK, Dewes RC, Aspinwall EM (2003) Workpiece surface modification using electrical discharge machining. Int J Mach Tools Manuf 43(2):121–128CrossRef
    17.Yeo SH, Yap GG (2001) A feasibility study on the micro electro-discharge machining process for photomask fabrication. Int J Adv Manuf Technol 18(1):7–11CrossRef
    18.Deng JX, Song WL, Zhang H (2009) Design, fabrication and properties of a self-lubricated tool in dry cutting. Int J Mach Tools Manuf 49(1):66–72CrossRef
    19.Etsion I (2004) Improving tribological performance of mechanical components by laser surface texturing. Tribol Lett 17(4):733–737CrossRef
    20.Zhang L, Tong H, Li Y (2015) Precision machining of micro tool electrodes in micro EDM for drilling array micro holes. Precision Eng-J Int Soc Precision Eng Nanotechnol 39:100–106
    21.Tai TY, Masusawa T, Lee HT (2007) Drilling micro holes in hot tool steel by using micro-electro discharge machining. Mater Trans 48(2):205–210CrossRef
    22.Ji RJ, Liu YH, Diao RQ, Zhang YZ, Wang F, Cai BP, Xu CC (2014) Experimental research on electrical discharge machining characteristics of engineering ceramics with different electrical resistivities. Int J Adv Manuf Technol 75(9–12):1743–1750CrossRef
    23.Do KC, Hong SS, Min SP, Bo HK, Chong NC (2011) Recent researches in micro electrical machining. Int J Precis Eng Manuf 12(2):371–380CrossRef
    24.Deng JX, Zhou JT, Zhang H, Yan P (2011) Wear mechanisms of cemented carbide tools in dry cutting of precipitation hardening semi-austenitic stainless steels. Wear 270(7–8):520–527
    25.Deng JX, Lian YS, Wu Z, Xing YQ (2013) Performance of femtosecond laser-textured cutting tools deposited with WS2 solid lubricant coatings. Surf Coat Technol 222:135–143CrossRef
    26.Yamazaki M, Suzuki T, Mori N, Kunieda M (2004) EDM of micro-rods by self-drilled holes. J Mater Process Technol 149(1–3):134–138CrossRef
    27.Ya G, Qin HW, Yang SC, Xu YW (2002) Analysis of the rotary ultrasonic machining mechanism. J Mater Process Technol 129(1–3):182–185CrossRef
    28.Thoe TB, Aspinwall DK, Wise M (1998) Review on ultrasonic machining. Int J Mach Tools Manuf 38(4):239–255CrossRef
    29.Dhuria GK, Singh R, Batish A (2011) Ultrasonic machining of titanium and its alloys: a state of art review and future prospective. Int J Mach Mach Mater 10(4):326–355
    30.Yadav V, Jain VK, Dixit PM (2002) Thermal stresses due to electrical discharge machining. Int J Mach Tools Manuf 42(8):877–888CrossRef
  • 作者单位:Yan Li (1)
    Jianxin Deng (1)
    Yongsheng Chai (2)
    Wenlong Fan (2)

    1. Department of Mechanical Engineering, Shandong University, Jinan, 250061, Shandong province, China
    2. School of Electromechanical and Automobile Engineering, Yantai University, Yantai, 264005, China
  • 刊物类别:Engineering
  • 刊物主题:Industrial and Production Engineering
    Production and Logistics
    Mechanical Engineering
    Computer-Aided Engineering and Design
  • 出版者:Springer London
  • ISSN:1433-3015
文摘
This paper demonstrates the process of micro electro-discharge machining (micro EDM) assisted with high-frequency vibration machining micro holes and linear grooves which are straight or inclined on WC/8 % Co (MA) and WC/15 % TiC/6 %Co (MB) cemented carbide cutting tool rake face or scrap reeling slot. Low-voltage sensing contact is introduced to determine the exact position of holes and grooves. Morphology of textured regions is examined and the elemental chemical composition of close proximity region to a straight hole is identified. Results show that micro holes and linear grooves with high dimension accuracy and exact position are machined as expected by micro EDM assisted with high-frequency vibration. There is no debris accumulating around the cavities. Materials of MA cutting tool adhere on the micro tool electrode slightly, while the dimension of adhesion position becomes constant after 3 μ holes are finished. However, the adhesion does not occur during machining MB cutting tools. The distance of edges of grain refinement regions and areas where elemental chemical composition varies to the contour of the hole is no more than 15 μm. Keywords Micro EDM High-frequency vibration Cutting tool Micro holes Linear grooves

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