• International Journal of Extreme Manufacturing
  • Vol. 3, Issue 4, 42002 (2021)
[in Chinese]1、2、*, [in Chinese]1, [in Chinese]1, [in Chinese]1, [in Chinese]1, [in Chinese]1, [in Chinese]1, [in Chinese]1, [in Chinese]1、2, and [in Chinese]1、2
Author Affiliations
  • 1School of Mechanical Engineering, Beijing Institute of Technology, Beijing 100081, People’s Republic of China
  • 2Beijing Institute of Technology Chongqing Innovation Center, Chongqing 401120, People’s Republic of China
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    DOI: 10.1088/2631-7990/ac1159 Cite this Article
    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. A review of the techniques for the mold manufacturing of micro/nanostructures for precision glass molding[J]. International Journal of Extreme Manufacturing, 2021, 3(4): 42002 Copy Citation Text show less
    References

    [1] Malshe A, Rajurkar K, Samant A, Hansen H N, Bapat S and Jiang W P 2013 Bio-inspired functional surfaces for advanced applications CIRP Ann. 62 607–28

    [2] Guo P, Lu Y, Ehmann K F and Cao J 2014 Generation of hierarchical micro-structures for anisotropic wetting by elliptical vibration cutting CIRP Ann. 63 553–6

    [3] CaiYK,XuZW,WangH,LauKHA,DingF,SunJN, Qin Y and Luo X C 2019 A sequential process for manufacturing nature-inspired anisotropic superhydrophobic structures on AISI 316L stainless steel Nanomanuf. Metrol. 2 148–59

    [4] Bruzzone A A G, Costa H L, Lonardo P M and Lucca D A 2008 Advances in engineered surfaces for functional performance CIRP Ann. 57 750–69

    [5] HeYP,ZhouTF,DongXB,LiuP,ZhaoWX,WangXB, Hu Y and Yan J W 2020 Generation of high-saturation two-level iridescent structures by vibration-assisted fly cutting Mater. Des. 193 108839

    [6] Zhu Z W, To S, Tong Z, Zhuang Z X and Jiang X Q 2019 Modulated diamond cutting for the generation of complicated micro/nanofluidic channels Precis. Eng. 56 136–42

    [7] Venkataraman K, Lelescu D, Duparré J, McMahon A, Molina G, Chatterjee P, Mullis R and Nayar S 2013 PiCam: an ultra-thin high performance monolithic camera array ACM Trans. Graph. 32 166

    [8] Brückner A, Oberd.rster A, Dunkel J, Reimann A and Wippermann F 2016 Ultra-slim 2D-and depth-imaging camera modules for mobile imaging Proc. SPIE 9760, MOEMS and Miniaturized Systems XV. 97600N (San Francisco, CA: SPIE) (https://doi.org/10.1117/12.2214062)

    [9] Wippermann F C, Brückner A, Oberd.rster A and Reimann A 2016 Novel multi-aperture approach for miniaturized imaging systems Proc. SPIE 9760, MOEMS and Miniaturized Systems XV. 97600S (San Francisco, California, United States: SPIE) (https://doi.org/ 10.1117/12.2211698)

    [10] Fang F Z, Zhang N, Guo D M, Ehmann K, Cheung B, Liu K and Yamamura K 2019 Towards atomic and close-to-atomic scale manufacturing Int. J. Extrem. Manuf. 1 012001

    [11] Fang F Z and Xu F F 2018 Recent advances in micro/nano-cutting: effect of tool edge and material properties Nanomanuf. Metrol. 1 4–31

    [12] Zhou T F, Yan J W and Kuriyagawa T 2012 Size effects on transferability and mold change of glass molding press for microgrooves Adv. Mater. Res. 497 235–9

    [13] Yan J W, Oowada T, Zhou T F and Kuriyagawa T 2009 Precision machining of microstructures on electroless-plated NiP surface for molding glass components J. Mater. Process. Technol. 209 4802–8

    [14] Zhou T F, Yan J W, Masuda J, Oowada T and Kuriyagawa T 2011 Investigation on shape transferability in ultraprecision glass molding press for microgrooves Precis. Eng. 35 214–20

    [15] YuQ,ZhouTF,JiangYG,YanX,AnZL,WangXB, Zhang D Y and Ono T 2018 Preparation of graphene-enhanced nickel-phosphorus composite films by ultrasonic-assisted electroless plating Appl. Surf. Sci. 435 617–25

    [16] Joshi D, Mosaddegh P, Musgraves J D, Richardson K C and Joseph P F 2013 Thermo-mechanical characterization of glass at high temperature using the cylinder compression test. part I: viscoelasticity, friction, and PPV J. Rheol. 57 1367–89

    [17] Zhang H, Ding B and Chen T H 2016 A high efficiency industrial polysilicon solar cell with a honeycomb-like surface fabricated by wet etching using a photoresist mask Appl. Surf. Sci. 387 1265–73

    [18] Sood S, Peelamedu R, Sundaram K B, Dein E and Todi R M 2007 Wet etching of sputtered tantalum thin films in NaOH and KOH based solutions J. Mater. Sci. Mater. Electron. 18 535–9

    [19] Chen F, Liu H W, Yang Q, Wang X H, Hou C, Bian H, Liang W W, Si J H and Hou X 2010 Maskless fabrication of concave microlens arrays on silica glasses by a femtosecond-laser-enhanced local wet etching method Opt. Express 18 20334–43

    [20] Tong S Y, Bian H, Yang Q, Chen F, Deng Z F, Si J H and Hou X 2014 Large-scale high quality glass microlens arrays fabricated by laser enhanced wet etching Opt. Express 22 29283–91

    [21] Hwang S, Lim K, Shin H, Lee S and Jang M 2017 Micro-pyramidal structure fabrication on polydimethylsiloxane (PDMS) by Si (100) KOH wet etching J. Korean Phys. Soc. 71 506–9

    [22] Kumar M D, Kim H and Kim J 2015 Periodically patterned Si pyramids for realizing high efficient solar cells by wet etching process Sol. Energy 117 180–6

    [23] Tung S W, Kuo C H, Hsu L S and Yang Y J 2013 Fabricating barbed microtip arrays by low-cost silicon wet etching techniques 2013 Transducers & Eurosensors XXVII: The 17th Int. Conf. on Solid-State Sensors, Actuators and Microsystems (Transducers & Eurosensors XXVII) (Barcelona: IEEE) (https://doi.org/10.1109/Transducers.2013.6626945)

    [24] Ng H M, Weimann N G and Chowdhury A 2003 GaN nanotip pyramids formed by anisotropic etching J. Appl. Phys. 94 650–3

    [25] Zhuang D, Edgar J H, Liu L H, Liu B and Walker L 2002 Wet chemical etching of AlN single crystals MRS Int. J. Nitride Semicond. Res. 7 4

    [26] Albero J, Nieradko L, Gorecki C, Ottevaere H, Gomez V, Thienpont H, Pietarinen J, P.iv.nranta B and Passilly N 2009 Fabrication of spherical microlenses by a combination of isotropic wet etching of silicon and molding techniques Opt. Express 17 6283–92

    [27] Razeghi M 2010 Technology of Quantum Devices (Boston, MA: Springer) p 560

    [28] Chan L W, Morse D E and Gordon M J 2018 Moth eye-inspired anti-reflective surfaces for improved IR optical systems & visible LEDs fabricated with colloidal lithography and etching Bioinsp. Biomim. 13 041001

    [29] Murias D, Reyes-Betanzo C, Moreno M, Torres A, Itzmoyotl A, Ambrosio R, Soriano M, Lucas J and Cabarrocas P R I 2012 Black silicon formation using dry etching for solar cells applications Mater. Sci. Eng. B 177 1509–13

    [30] Zajadacz J, Lorenz P, Frost F, Fechner R, Steinberg C, Scheer H-C and Zimmer K 2015 Reactive ion beam etching of fused silica using vertical lamellar patterns of PS-b-PMMA diblock copolymer masks Microelectron. Eng. 141 289–93

    [31] Suzuki K, Youn S-W, Wang Q, Hiroshima H and Nishioka Y 2013 Fabrication of sub 20 nm wide grooves in a quartz mold by space narrowing dry etching Microelectron. Eng. 110 432–5

    [32] Petersen R S, Keller S S, Hansen O and Boisen A 2015 Fabrication of Ni stamp with high aspect ratio, two-leveled, cylindrical microstructures using dry etching and electroplating J. Micromech. Microeng. 25 055021

    [33] Dylewicz R, Patela S, Hogg R A, Fry P W, Parbrook P J, Airey R and Tahraoui A 2009 Low-dimensional waveguide grating fabrication in GaN with use of SiCl4/Cl2/ar-based inductively coupled plasma dry etching J. Electron. Mater. 38 635–9

    [34] Grushina A 2019 Direct-write grayscale lithography Adv. Opt. Technol. 8 163–9

    [35] Lisunova Y and Brugger J 2018 Combination of thermal scanning probe lithography and ion etching to fabricate 3D silicon nanopatterns with extremely smooth surface Microelectron. Eng. 193 23–7

    [36] ZhouTF,XuRZ,RuanBS,LiangZQandWangXB2018 Fabrication of microlens array on 6H-SiC mold by an integrated microcutting-etching process Precis. Eng. 54 314–20

    [37] ZhouTF,XuRZ,RuanBS,HeYP,LiangZQand Wang X B 2020 Study on new method and mechanism of microcutting-etching of microlens array on 6H-SiC mold by combining single point diamond turning with ion beam etching J. Mater. Process. Technol. 278 116510

    [38] PanA,GaoB,ChenT,SiJH,LiCX,ChenFandHouX 2014 Fabrication of concave spherical microlenses on silicon by femtosecond laser irradiation and mixed acid etching Opt. Express 22 15245–50

    [39] Kobayashi T, Sera H, Wakabayashi T, Endo H, Takushima Y and Yan J W 2018 Surface flattening and nanostructuring of steel by picosecond pulsed laser irradiation Nanomanuf. Metrol. 1 217–24

    [40] CaiYK,ChangWL,LuoXC,SousaAML,LauKHA and Qin Y 2018 Superhydrophobic structures on 316L stainless steel surfaces machined by nanosecond pulsed laser Precis. Eng. 52 266–75

    [41] Saxena I, Liu J T, Ehmann K and Cao J 2015 Periodic surface pattern fabrication via biprism interference micro-machining Surf. Topogr. Metrol. Prop. 3 045006

    [42] Rosenkranz A, Gruetzmacher P G, Szurdak A, Gachot C, Hirt G and Muecklich F 2016 Synergetic effect of laser patterning and micro coining for controlled lubricant propagation Surf. Topogr. Metrol. Prop. 4 034008

    [43] Birnbaum M 1965 Semiconductor surface damage produced by ruby lasers J. Appl. Phys. 36 3688–9

    [44] Zuhlke C A, Alexander D R, Bruce J C, Ianno N J, Kamler C A and Yang W Q 2010 Self assembled nanoparticle aggregates from line focused femtosecond laser ablation Opt. Express 18 4329–39

    [45] Vorobyev A Y and Guo C L 2013 Direct femtosecond laser surface nano/microstructuring and its applications Laser Photon. Rev. 7 385–407

    [46] Xue L, Yang J J, Yang Y, Wang Y S and Zhu X N 2012 Creation of periodic subwavelength ripples on tungsten surface by ultra-short laser pulses Appl. Phys. A 109 357–65

    [47] H.hm S, Herzlieb M, Rosenfeld A, Krüger J and Bonse J 2015 Femtosecond laser-induced periodic surface structures on silicon upon polarization controlled two-color double-pulse irradiation Opt. Express 23 61–71

    [48] HuangYG,LiuSB,LiW,LiuYXandYangW2009 Two-dimensional periodic structure induced by single-beam femtosecond laser pulses irradiating titanium Opt. Express 17 20756–61

    [49] Vorobyev A Y, Makin V S and Guo C L 2007 Periodic ordering of random surface nanostructures induced by femtosecond laser pulses on metals J. Appl. Phys. 101 034903

    [50] Pan A, Si J H, Chen T, Li C X and Hou X 2016 Fabrication of two-dimensional periodic structures on silicon after scanning irradiation with femtosecond laser multi-beams Appl. Surf. Sci. 368 443–8

    [51] Vorobyev A Y, Makin V S and Guo C L 2009 Brighter light sources from black metal: significant increase in emission efficiency of incandescent light sources Phys. Rev. Lett. 102 234301

    [52] Dusser B, Sagan Z, Soder H, Faure N, Colombier J P, Jourlin M and Audouard E 2010 Controlled nanostructrures formation by ultra fast laser pulses for color marking Opt. Express 18 2913–24

    [53] Wang L, Chen Q-D, Cao X-W, Buividas R, Wang X W, Juodkazis S and Sun H-B 2017 Plasmonic nano-printing: large-area nanoscale energy deposition for efficient surface texturing Light Sci. Appl. 6 e17112

    [54] Golosov E V, Ionin A A, Kolobov Y R, Kudryashov S I, Ligachev A E, Novoselov Y N, Seleznev L V and Sinitsyn D V 2011 Ultrafast changes in the optical properties of a titanium surface and femtosecond laser writing of one-dimensional quasi-periodic nanogratings of its relief J. Exp. Theor. Phys. 113 14

    [55] Okamuro K, Hashida M, Miyasaka Y, Ikuta Y, Tokita S and Sakabe S 2010 Laser fluence dependence of periodic grating structures formed on metal surfaces under femtosecond laser pulse irradiation Phys. Rev. B 82 165417

    [56] Yang Y, Yang J J, Xue L and Guo Y 2010 Surface patterning on periodicity of femtosecond laser-induced ripples Appl. Phys. Lett. 97 141101

    [57] Korolkov V P, Ionin A A, Kudryashov S I, Seleznev L V, Sinitsyn D V, Samsonov R V, Maslii A I, Medvedev A Z and Gol’denberg B G 2011 Surface nanostructuring of Ni/Cu foils by femtosecond laser pulses Quantum Electron. 41 387–92

    [58] Makin V S, Makin R S, Vorobyev A Y and Guo C L 2008 Dissipative nanostructures and Feigenbaum’s universality in the ‘metal-high-power ultrashort-pulsed polarized radiation’ nonequilibrium nonlinear dynamical system Tech. Phys. Lett. 34 387–90

    [59] YaoJW,ZhangCY,LiuHY,DaiQF,WuLJ,LanS, Gopal A V, Trofimov V A and Lysak T M 2012 High spatial frequency periodic structures induced on metal surface by femtosecond laser pulses Opt. Express 20 905–11

    [60] Dufft D, Rosenfeld A, Das S K, Grunwald R and Bonse J 2009 Femtosecond laser-induced periodic surface structures revisited: a comparative study on ZnO J. Appl. Phys. 105 034908

    [61] Kirkwood S E, Taschuk M T, Tsui Y Y and Fedosejevs R 2007 Nanomilling surfaces using near-threshold femtosecond laser pulses J. Phys.: Conf. Ser. 59 591–4

    [62] Eversole D, Luk’Yanchuk B and Ben-Yakar A 2007 Plasmonic laser nanoablation of silicon by the scattering of femtosecond pulses near gold nanospheres Appl. Phys. A 89 283–91

    [63] Kaakkunen J J J, Paivasaari K, Kuittinen M and Jaaskelainen T 2009 Morphology studies of the metal surfaces with enhanced absorption fabricated using interferometric femtosecond ablation Appl. Phys. A 94 215

    [64] Zorba V, Persano L, Pisignano D, Athanassiou A, Stratakis E, Cingolani R, Tzanetakis P and Fotakis C 2006 Making silicon hydrophobic: wettability control by two-lengthscale simultaneous patterning with femtosecond laser irradiation Nanotechnology 17 3234–8

    [65] Vorobyev A Y and Guo C L 2007 Femtosecond laser structuring of titanium implants Appl. Surf. Sci. 253 7272–80

    [66] Huang J, Jiang L, Li X W, Wang A D, Wang Z, Wang Q S, Hu J, Qu L T, Cui T H and Lu Y F 2019 Fabrication of highly homogeneous and controllable nanogratings on silicon via chemical etching-assisted femtosecond laser modification Nanophotonics 8 869–78

    [67] Vorobyev A Y and Guo C L 2010 Water sprints uphill on glass J. Appl. Phys. 108 123512

    [68] HeQP,XieJ,GuoRB,MaPXandLuYJ2018 Experimental study on impulse discharge machinability of concave micro-array using a micro-tip array electrode Mach. Sci. Technol. 22 1029–44

    [69] Tong H, Li Y and Zhang L 2018 Servo scanning 3D micro EDM for array micro cavities using on-machine fabricated tool electrodes J. Micromech. Microeng. 28 025013

    [70] Koyano T, Sugata Y, Hosokawa A and Furumoto T 2019 Micro-electrical discharge machining of micro-rods using tool electrodes with high electrical resistivity Precis. Eng. 55 95–100

    [71] Singh A K, Patowari P K and Deshpande N V 2019 Analysis of micro-rods machined using reverse micro-EDM J. Braz. Soc. Mech. Sci. Eng. 41 15

    [72] Lin Y C, Yan B H and Chang Y S 2000 Machining characteristics of titanium alloy (Ti-6Al-4V) using a combination process of EDM with USM J. Mater. Process. Technol. 104 171–7

    [73] Liew P J, Yan J W and Kuriyagawa T 2014 Fabrication of deep micro-holes in reaction-bonded SiC by ultrasonic cavitation assisted micro-EDM Int. J. Mach. Tools Manuf. 76 13–20

    [74] Xu K, Zeng Y B, Li P and Zhu D 2017 Vibration assisted wire electrochemical micro machining of array micro tools Precis. Eng. 47 487–97

    [75] Chen S T and Yang S W 2017 A high-density, super-high-aspect-ratio microprobe array realized by high-frequency vibration assisted inverse micro w-EDM J. Mater. Process. Technol. 250 144–55

    [76] Lin Y C and Lee H S 2009 Optimization of machining parameters using magnetic-force-assisted EDM based on gray relational analysis Int. J. Adv. Manuf. Technol. 42 1052

    [77] Gholipoor A, Baseri H, Shakeri M and Shabgard M 2016 Investigation of the effects of magnetic field on near-dry electrical discharge machining performance Proc. Inst. Mech. Eng. B 230 744–51

    [78] Singh G, Satsangi P S and Prajapati D R 2020 Effect of rotating magnetic field and ultrasonic vibration on micro-EDM process Arab. J. Sci. Eng. 45 1059–70

    [79] Roy T, Datta D and Balasubramaniam R 2018 Numerical modelling, simulation and fabrication of 3D hemi-spherical convex micro features using reverse micro EDM J. Manuf. Process. 32 344–56

    [80] Brinksmeier E, Gl.be R and Sch.nemann L 2012 Review on diamond-machining processes for the generation of functional surface structures CIRP J. Manuf. Sci. Technol. 5 1–7

    [81] Scheiding S, Yi A Y, Gebhardt A, Loose R, Li L, Risse S, Eberhardt R and Tünnermann A 2011 Diamond milling or turning for the fabrication of micro lens arrays: comparing different diamond machining technologies Proc. SPIE 7927, Advanced Fabrication Technologies for Micro/Nano Optics and Photonics IV. 79270N (San Francisco, California, United States: SPIE) (https://doi.org/10.1117/12.874751)

    [82] Li C J, Li Y, Gao X and Duong C V 2015 Ultra-precision machining of Fresnel lens mould by single-point diamond turning based on axis B rotation Int. J. Adv. Manuf. Technol. 77 907–13

    [83] Yan J W, Horikoshi A, Kuriyagawa T and Fukushima Y 2012 Manufacturing structured surface by combining microindentation and ultraprecision cutting CIRP J. Manuf. Sci. Technol. 5 41–7

    [84] JiSJ,YuHJ,ZhaoJ,LiuXLandZhaoMX2016 Ultra-precision machining of a large amplitude sinusoidal ring surface based on a slow tool servo Stroj. Vestn. J. Mech. Eng. 62 213–9

    [85] Yi A Y and Li L 2005 Design and fabrication of a microlens array by use of a slow tool servo Opt. Lett. 30 1707–9

    [86] Kong L B, Cheung C F and Lee W B 2016 A theoretical and experimental investigation of orthogonal slow tool servo machining of wavy microstructured patterns on precision rollers Precis. Eng. 43 315–27

    [87] ZhangXD,FangFZ,YuLH,JiangLLandGuoYW2013 Slow slide servo turning of compound eye lens Opt. Eng. 52 023401

    [88] Mukaida M and Yan J W 2017 Ductile machining of single-crystal silicon for microlens arrays by ultraprecision diamond turning using a slow tool servo Int. J. Mach. Tools Manuf. 115 2–14

    [89] Mukaida M and Yan J W 2017 Fabrication of hexagonal microlens arrays on single-crystal silicon using the tool-servo driven segment turning method Micromachines 8 323

    [90] Fang F Z, Zhang X D, Weckenmann A, Zhang G X and Evans C 2013 Manufacturing and measurement of freeform optics CIRP Ann. 62 823–46

    [91] To S, Zhu Z W and Wang H T 2016 Virtual spindle based tool servo diamond turning of discontinuously structured microoptics arrays CIRP Ann. 65 475–8

    [92] ZhuLL,LiZX,FangFZ,HuangSYandZhangXD2018 Review on fast tool servo machining of optical freeform surfaces Int. J. Adv. Manuf. Technol. 95 2071–92

    [93] YuDP,GanSW,WongYS,HongGS,RahmanMand Yao J 2012 Optimized tool path generation for fast tool servo diamond turning of micro-structured surfaces Int. J. Adv. Manuf. Technol. 63 1137–52

    [94] Yu D P, Hong G S and Wong Y S 2012 Profile error compensation in fast tool servo diamond turning of micro-structured surfaces Int. J. Mach. Tools Manuf. 52 13–23

    [95] ZhuZW,ZhouXQ,LiuQ,LinJQandZhaoSX2012 Fabrication of micro-structured surfaces on bulk metallic glasses based on fast tool servo assisted diamond turning Sci. Adv. Mater. 4 906–11

    [96] Yu D P, Wong Y S and Hong G S 2011 Ultraprecision machining of micro-structured functional surfaces on brittle materials J. Micromech. Microeng. 21 095011

    [97] Brehl D E and Dow T A 2008 Review of vibration-assisted machining Precis. Eng. 32 153–72

    [98] Paul E, Evans C J, Mangamelli A, McGlauflin M L and Polvani R S 1996 Chemical aspects of tool wear in single point diamond turning Precis. Eng. 18 4–19

    [99] Chen W Q, Zheng L, Xie W K, Yang K and Huo D H 2019 Modelling and experimental investigation on textured surface generation in vibration-assisted micro-milling J. Mater. Process. Technol. 266 339–50

    [100] B.rner R, Winkler S, Junge T, Titsch C, Schubert A and Drossel W-G 2018 Generation of functional surfaces by using a simulation tool for surface prediction and micro structuring of cold-working steel with ultrasonic vibration assisted face milling J. Mater. Process. Technol. 255 749–59

    [101] Zhao C Y, Wang X B, Zhao B and Jiao F 2018 Microstructure of high-performance aluminum alloy surface processed by the single-excitation same-frequency longitudinal-torsional coupled ultrasonic vibration milling Materials 11 1975

    [102] Xu S L, Kuriyagawa T, Shimada K and Mizutani M 2017 Recent advances in ultrasonic-assisted machining for the fabrication of micro/nano-textured surfaces Front. Mech. Eng. 12 33–45

    [103] Brehl D E and Dow T A 2006 Review of vibration-assisted machining methods for precision fabrication Proc. 21st Annu. ASPE Meet. ASPE 2006

    [104] Lin J Q, Li Y C and Zhou X Q 2014 Tool path generation for fabricating optical freeform surfaces by non-resonant three-dimensional elliptical vibration cutting Proc. Inst. Mech. Eng. C 228 1208–22

    [105] Lin J, Lu M and Zhou X 2016 Development of a non-resonant 3d elliptical vibration cutting apparatus for diamond turning Exp. Tech. 40 173–83

    [106] Suzuki N, Haritani M, Yang J, Hino R and Shamoto E 2007 Elliptical vibration cutting of tungsten alloy molds for optical glass parts CIRP Ann. 56 127–30

    [107] Kim G D and Loh B G 2007 An ultrasonic elliptical vibration cutting device for micro V-groove machining: kinematical analysis and micro V-groove machining characteristics J. Mater. Process. Technol. 190 181–8

    [108] Zhou M, Ngoi B K A, Yusoff M N and Wang X J 2006 Tool wear and surface finish in diamond cutting of optical glass J. Mater. Process. Technol. 174 29–33

    [109] Zhang J G, Cui T, Ge C, Sui Y X and Yang H J 2016 Review of micro/nano machining by utilizing elliptical vibration cutting Int. J. Mach. Tools Manuf. 106 109–26

    [110] Shamoto E and Moriwaki T 1994 Study on elliptical vibration cutting CIRP Ann. 43 35–8

    [111] Zhang J G, Zhang J J, Cui T, Hao Z W and Zahrani A A 2017 Sculpturing of single crystal silicon microstructures by elliptical vibration cutting J. Manuf. Process. 29 389–98

    [112] Kurniawan R, Kumaran S T, Ali S, Nurcahyaningsih D A, Kiswanto G and Ko T J 2018 Experimental and analytical study of ultrasonic elliptical vibration cutting on AISI 1045 for sustainable machining of round-shaped microgroove pattern Int. J. Adv. Manuf. Technol. 98 2031–55

    [113] Shamoto E, Suzuki N and Hino R 2008 Analysis of 3D elliptical vibration cutting with thin shear plane model CIRP Ann. 57 57–60

    [114] Ma C X, Ma J, Shamoto E and Moriwaki T 2011 Analysis of regenerative chatter suppression with adding the ultrasonic elliptical vibration on the cutting tool Precis. Eng. 35 329–38

    [115] Zhang J G, Suzuki N, Wang Y L and Shamoto E 2015 Ultra-precision nano-structure fabrication by amplitude control sculpturing method in elliptical vibration cutting Precis. Eng. 39 86–99

    [116] Kurniawan R, Ko T J, Ping L C, Kumaran S T, Kiswanto G, Guo P and Ehmann K F 2017 Development of a two-frequency, elliptical-vibration texturing device for surface texturing J. Mech. Sci. Technol. 31 3465–73

    [117] Wang J J, Liao W-H and Guo P 2020 Modulated ultrasonic elliptical vibration cutting for ductile-regime texturing of brittle materials with 2D combined resonant and non-resonant vibrations Int. J. Mech. Sci. 170 105347

    [118] Wang D Y, Zhang X Y and Zhang D Y 2018 Fabrication of a peristome surface structure of Nepenthes alata by elliptical vibration cutting Nanomanuf. Metrol. 1 209–16

    [119] Suzuki N, Yokoi H and Shamoto E 2011 Micro/nano sculpturing of hardened steel by controlling vibration amplitude in elliptical vibration cutting Precis. Eng. 35 44–50

    [120] Suzuki N, Yokoi H and Shamoto E 2009 Ultra-precision micro texturing of hardened steel by controlling vibration amplitude in elliptical vibration cutting Proc. 9th Int. Conf. of the European Society for Precision Engineering and Nanotechnology

    [121] Guo P and Ehmann K F 2013 Development of a tertiary motion generator for elliptical vibration texturing Precis. Eng. 37 364–71

    [122] Guo P and Ehmann K F 2013 An analysis of the surface generation mechanics of the elliptical vibration texturing process Int. J. Mach. Tools Manuf. 64 85–95

    [123] Yang Y, Pan Y Y and Guo P 2017 Structural coloration of metallic surfaces with micro/nano-structures induced by elliptical vibration texturing Appl. Surf. Sci. 402 400–9

    [124] Yang Y and Guo P 2018 Effect of elliptical vibration trajectories on grating structure formation and its application in structural coloration Proc. Manuf. 26 543–51

    [125] Wang J J, Wang Y K, Yang Y, Yang R, Liao W-H and Guo P 2020 Fabrication of structurally colored basso-relievo with modulated elliptical vibration texturing Precis. Eng. 64 113–21

    [126] Lu Y, Guo P, Pei P C and Ehmann K F 2015 Experimental studies of wettability control on cylindrical surfaces by elliptical vibration texturing Int. J. Adv. Manuf. Technol. 76 1807–17

    [127] Xu S L, Shimada K, Mizutani M and Kuriyagawa T 2016 Analysis of machinable structures and their wettability of rotary ultrasonic texturing method Chin. J. Mech. Eng. 29 1187–92

    [128] Xu S L, Shimada K, Mizutani M and Kuriyagawa T 2017 Development of a novel 2D rotary ultrasonic texturing technique for fabricating tailored structures Int. J. Adv. Manuf. Technol. 89 1161–72

    [129] Yan J, Zhang Z, Kuriyagawa T and Gonda H 2010 Fabricating micro-structured surface by using single-crystalline diamond endmill Int. J. Adv. Manuf. Technol. 51 957–64

    [130] Brecher C, Lange S, Merz M, Niehaus F, Wenzel C, Winterschladen M and Weck M 2006 NURBS based ultra-precision free-form machining CIRP Ann. 55 547–50

    [131] Wilson M E, Kota N, Kim Y, Wang Y D, Stolz D B, LeDuc P R and Ozdoganlar O B 2011 Fabrication of circular microfluidic channels by combining mechanical micromilling and soft lithography Lab Chip 11 1550–5

    [132] Wan Y, Wang T, Wang Z S, Jin Y F and Liu Z Q 2018 Construction and characterization of micro/nano-topography on titanium alloy formed by micro-milling and anodic oxidation Int. J. Adv. Manuf. Technol. 98 29–35

    [133] Matsumura T and Takahashi S 2012 Micro dimple milling on cylinder surfaces J. Manuf. Process. 14 135–40

    [134] Graham E, Park C I and Park S S 2013 Fabrication of micro-dimpled surfaces through micro ball end milling Int. J. Precis. Eng. Manuf. 14 1637–46

    [135] Sun Z W, To S and Yu K M 2018 One-step generation of hybrid micro-optics with high-frequency diffractive structures on infrared materials by ultra-precision side milling Opt. Express 26 28161–77

    [136] Wang S J, To S, Chen X, Wang H and Xia H J 2014 A study of the fabrication of v-groove structure in ultra-precision milling Int. J. Comput. Integr. Manuf. 27 986–96

    [137] Zhang S J and To S 2013 A theoretical and experimental study of surface generation under spindle vibration in ultra-precision raster milling Int. J. Mach. Tools Manuf. 75 36–45

    [138] Wang H T and Lee W B 2016 A study of cutting factors affecting the generation of functional hierarchical rib array structure in ultra-precision raster milling Int. J. Adv. Manuf. Technol. 86 989–98

    [139] Cheng M N, Cheung C F, Lee W B, To S and Kong L B 2008 Theoretical and experimental analysis of nano-surface generation in ultra-precision raster milling Int. J. Mach. Tools Manuf. 48 1090–102

    [140] Zhao W, Wang H T and Chen W 2019 Studying the effects of cutting parameters on burr formation and deformation of hierarchical micro-structures in ultra-precision raster milling Int. J. Adv. Manuf. Technol. 101 1133–41

    [141] Cheng C T, Zhang G Q and To S 2016 Wetting characteristics of bare micro-patterned cyclic olefin copolymer surfaces fabricated by ultra-precision raster milling RSC Adv. 6 1562–70

    [142] DongXB,ZhouTF,PangSQ,LiangZQ,YuQ,RuanBS and Wang X B 2019 Comparison of fly cutting and transverse planing for micropyramid array machining on nickel phosphorus plating Int. J. Adv. Manuf. Technol. 102 2481–9

    [143] Dong X B, Zhou T F, Pang S Q, Liang Z Q, Ruan B S, Zhu Z C and Wang X B 2018 Mechanism of burr accumulation and fracture pit formation in ultraprecision microgroove fly cutting of crystalline nickel phosphorus J. Micromech. Microeng. 28 125008

    [144] Denkena B, K.hler J, K.stner J, G.ttsching T, Dinkelacker F and Ulmer H 2013 Efficient machining of microdimples for friction reduction J. Micro Nano Manuf. 1 011003

    [145] Jiao F F, Saravi S S and Cheng K 2017 Investigation on an integrated approach to design and micro fly-cutting of micro-structured riblet surfaces Proc. Inst. Mech. Eng. C 231 3291–300

    [146] Komiya R, Kimura T, Nomura T, Kubo M and Yan J W 2018 Ultraprecision cutting of single-crystal calcium fluoride for fabricating micro flow cells J. Adv. Mech. Des. Syst. Manuf. 12 17–00388

    [147] Han X S 2018 Investigate the initialization of materials removal and deformation in single point diamond fly cutting technique using multiscale method AIP Adv. 8 075205

    [148] Li K, He S P, Luo B, Li B and Liu H Q 2019 Chatter stability in ultra-precision fly cutting considering tool wear effect Int. J. Adv. Manuf. Technol. 103 1067–78

    [149] Liu L, Lu L H, Gao Q, Zhang R and Chen W Q 2017 External aerodynamic force on an ultra-precision diamond fly-cutting machine tool for KDP crystal machining Int. J. Adv. Manuf. Technol. 93 4169–78

    [150] Wang M L, Zhang Y, Guo S W and An C H 2018 Longitudinal micro-waviness (LMW) formation mechanism on large optical surface during ultra-precision fly cutting Int. J. Adv. Manuf. Technol. 95 4659–69

    [151] Zhang S J, To S, Zhu Z W and Zhang G Q 2016 A review of fly cutting applied to surface generation in ultra-precision machining Int. J. Mach. Tools Manuf. 103 13–27

    [152] Zhao Q L, Guo B, Yang H and Zhang X H 2009 A mechanistic cutting force model for diamond fly-cutting of microstructured surface Proc. SPIE 7282, 4th Int. Symp. on Advanced Optical Manufacturing and Testing Technologies: Advanced Optical Manufacturing Technologies. 728204 (Chengdu, China: SPIE) (https://doi.org/10.1117/12.830782)

    [153] LiangYC,ChenWQ,BaiQS,SunYZ,ChenGD, Zhang Q and Sun Y 2013 Design and dynamic optimization of an ultraprecision diamond flycutting machine tool for large KDP crystal machining Int. J. Adv. Manuf. Technol. 69 237–44

    [154] Yan Y Y, Wang R X and Zhao B 2015 Study on influence laws of surface roughness of micro-groove in single crystal silicon under diamond fly-cutting Key Eng. Mater. 667 142–8

    [155] HuangYT,LiSJ,FanB,WanYJ,WuSB,ZhangJ, Liang H F and Ge S B 2019 Fabrication of micropyramid structure by fly-cutting Opt. Eng. 58 013107

    [156] ZhouTF,HeYP,WangTX,DongXB,LiuP,ZhaoWX, Hu Y and Yan J W 2020 Algorithm of micro-grooving and imaging processing for the generation of high-resolution structural color images Nanomanuf. Metrol. 3 187–98

    [157] Brinksmeier E, Karpuschewski B, Yan J W and Sch.nemann L 2020 Manufacturing of multiscale structured surfaces CIRP Ann. 69 717–39

    [158] Zhu Z W, To S and Zhang S J 2015 Theoretical and experimental investigation on the novel end-fly-cutting-servo diamond machining of hierarchical micro-nanostructures Int. J. Mach. Tools Manuf. 94 15–25

    [159] ZhuZW,ToS,EhmannKF,XiaoGBandZhuWL2016A novel diamond micro-/nano-machining process for the generation of hierarchical micro-/nano-structures J. Micromech. Microeng. 26 035009

    [160] Chen D S, Chen J H and Wang B R 2016 A hybrid method for crackless and high-efficiency ultraprecision chamfering of KDP crystal Int. J. Adv. Manuf. Technol. 87 293–302

    [161] Sun Z W, To S and Yu K M 2019 An investigation in the ultra-precision fly cutting of freeform surfaces on brittle materials with high machining efficiency and low tool wear Int. J. Adv. Manuf. Technol. 101 1583–93

    [162] ZhouTF,LiuXH,LiangZQ,LiuY,XieJQandWangXB 2017 Recent advancements in optical microstructure fabrication through glass molding process Front. Mech. Eng. 12 46–65

    [163] Kobayashi R, Zhou T F, Shimada K, Mizutani M and Kuriyagawa T 2013 Ultraprecision glass molding press for microgrooves with different pitch sizes Int. J. Autom. Technol. 7 678–85

    [164] Guo B, Zhao Q L and Jackson M J 2013 Precision grinding of binderless ultrafine tungsten carbide (WC) microstructured surfaces Int. J. Adv. Manuf. Technol. 64 727–35

    [165] Yin S H, Ohmori H, Uehara Y, Shimizu T and Lin W M 2004 Micro V-groove grinding technique of large germanium immersion grating element for mid-infrared spectrograph JSME Int. J. Ser. C 47 59–65

    [166] Zhang Z Y, Yan J W and Kuriyagawa T 2019 Manufacturing technologies toward extreme precision Int. J. Extrem. Manuf. 1 022001

    [167] Denkena B, K.hler J and Wang B 2010 Manufacturing of functional riblet structures by profile grinding CIRP J. Manuf. Sci. Technol. 3 14–26

    [168] ZhouTF,HeYP,YuQ,LiangZQ,LiSD,LiuXH, Dong X B and Wang X B 2020 Study on electroless composite plating for an Ni-P bond micro diamond wheel J. Mater. Process. Technol. 279 116561

    [169] Aurich J C, Braun O, Warnecke G and Cronj.ger L 2003 Development of a superabrasive grinding wheel with defined grain structure using kinematic simulation CIRP Ann. 52 275–80

    [170] Ronald B A, Vijayaraghavan L and Krishnamurthy R 2009 Studies on the influence of grinding wheel bond material on the grindability of metal matrix composites Mater. Des. 30 679–86

    [171] Onikura H, Inoue R, Okuno K and Ohnishi O 2003 Fabrication of electroplated micro grinding wheels and manufacturing of microstructures with ultrasonic vibration Key Eng. Mater. 238–239 9–14

    [172] Aurich J C, Engmann J, Schueler G M and Haberland R 2009 Micro grinding tool for manufacture of complex structures in brittle materials CIRP Ann. 58 311–4

    [173] Jappes J T W, Ramamoorthy B and Nair P K 2005 A study on the influence of process parameters on efficiency and crystallinity of electroless Ni-P deposits J. Mater. Process. Technol. 169 308–13

    [174] Molaie M M, Akbari J and Movahhedy M R 2016 Ultrasonic assisted grinding process with minimum quantity lubrication using oil-based nanofluids J. Clean. Prod. 129 212–22

    [175] Guo B and Zhao Q L 2017 Ultrasonic vibration assisted grinding of hard and brittle linear micro-structured surfaces Precis. Eng. 48 98–106

    [176] Chen F, Mei G J, Zhao B, Bie W B and Li G X 2020 Study on the characteristics of zirconia ceramic in three-dimensional ultrasonic vibration-assisted ELID internal grinding J. Mech. Sci. Technol. 34 333–44

    [177] LiuXH,ZhouTF,ZhangL,ZhouWC,YuJF,LeeLJand Yi A Y 2018 Fabrication of spherical microlens array by combining lapping on silicon wafer and rapid surface molding J. Micromech. Microeng. 28 075008

    [178] LiuXH,ZhouTF,ZhangL,ZhouWC,YuJF,LeeLJand Yi A Y 2019 3D fabrication of spherical microlens arrays on concave and convex silica surfaces Microsyst. Technol. 25 361–70

    [179] Liu Y, Zhao W X, Zhou T F, Liu X and Wang X B 2017 Microgroove machining on crystalline nickel phosphide plating by single-point diamond cutting Int. J. Adv. Manuf. Technol. 91 477–84

    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. A review of the techniques for the mold manufacturing of micro/nanostructures for precision glass molding[J]. International Journal of Extreme Manufacturing, 2021, 3(4): 42002
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