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Erschienen in: Experimental Mechanics 7/2017

02.08.2016

A New Application of Dynamic Indentation: Indentation Machining Technology

verfasst von: E.-c. Jeon, J.-R. Lee, D.-H. Choi, H.-J. Choi, T.-J. Je

Erschienen in: Experimental Mechanics | Ausgabe 7/2017

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Abstract

While the indentation method is an excellent way to evaluate the mechanical properties of various sizes of materials, from the nano-scale to the macro-scale, its applications have been limited to measuring mechanical properties. In this study we propose a new application of the dynamic indentation method, in an indentation machining technology for mass-production. The core idea is that the array of residual indentations generated by dynamic indentation testing can be used to fabricate a lens array suitable for thinner and brighter displays. We developed an advanced system from a dynamic indentation system, whose maximum speed and maximum specimen size were about 10Hz and 250 mm*250 mm, respectively. Using dual actuating heads this system was used to produce arrays of lenses having depths of 1 μm to 6 mm. Pile-up is a critical reason why indentation machining technology had been not widely used in display industries. Since lower pile-up is observed in more ductile copper-based metals, we increased the annealing time of the metal molds to reduce the amount of pile-up. Then, following a quantitative analysis of the annealing heat treatment and resulting amount of pile-up, a lens array was successfully machined on a metal mold fabricated by the developed system. The machined metal mold was used to manufacture optical plates for a lens array. The results verified that the indentation machining technology proposed in this study, based on the dynamic indentation method, can be applied for the manufacturing of optical components for better displays.

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Literatur
1.
Zurück zum Zitat Oliver WC, Pharr GM (1992) An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments. J Mater Res 7:1564–1583CrossRef Oliver WC, Pharr GM (1992) An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments. J Mater Res 7:1564–1583CrossRef
2.
Zurück zum Zitat Doerner MF, Gardner DS, Nix WD (1986) Plastic properties of thin films on substrates as measured by submicron indentation hardness and substrate curvature techniques. J Mater Res 1:845–851CrossRef Doerner MF, Gardner DS, Nix WD (1986) Plastic properties of thin films on substrates as measured by submicron indentation hardness and substrate curvature techniques. J Mater Res 1:845–851CrossRef
3.
Zurück zum Zitat Kucharski S, Jarząbek D, Piątkowska A, Woźniacka S (2015) Decrease of nano-hardness at ultra-low indentation depths in copper single crystal. Exp Mech. doi:10.1007/s11340-015-0105-2 Kucharski S, Jarząbek D, Piątkowska A, Woźniacka S (2015) Decrease of nano-hardness at ultra-low indentation depths in copper single crystal. Exp Mech. doi:10.​1007/​s11340-015-0105-2
4.
Zurück zum Zitat Jeon Ec, Kim JY, Baik MK, Kim SH, Park JS, Kwon D (2006) Optimum definition of true strain beneath a spherical indenter for deriving indentation flow curves. Mater Sci Eng A 419:196–201CrossRef Jeon Ec, Kim JY, Baik MK, Kim SH, Park JS, Kwon D (2006) Optimum definition of true strain beneath a spherical indenter for deriving indentation flow curves. Mater Sci Eng A 419:196–201CrossRef
5.
Zurück zum Zitat Herbert EG, Pharr GM, Oliver WC, Lucas BN, Hay JL (2001) On the measurement of stress-strain curves by spherical indentation. Thin Solid Films 398–399:331–335CrossRef Herbert EG, Pharr GM, Oliver WC, Lucas BN, Hay JL (2001) On the measurement of stress-strain curves by spherical indentation. Thin Solid Films 398–399:331–335CrossRef
6.
Zurück zum Zitat Anstis GR, Chantikul P, Lawn BR, Marshall DB (1981) A critical evaluation of indentation techniques for measuring fracture toughness: I, direct crack measurement. J Am Ceram Soc 64:533–538CrossRef Anstis GR, Chantikul P, Lawn BR, Marshall DB (1981) A critical evaluation of indentation techniques for measuring fracture toughness: I, direct crack measurement. J Am Ceram Soc 64:533–538CrossRef
7.
Zurück zum Zitat Lee JS, Jang JI, Lee BW, Choi Y, Lee SG, Kwon D (2006) An instrumented indentation technique for estimating fracture toughness of ductile materials: A critical indentation energy model based on continuum damage mechanics. Acta Mater 54:1101–1109CrossRef Lee JS, Jang JI, Lee BW, Choi Y, Lee SG, Kwon D (2006) An instrumented indentation technique for estimating fracture toughness of ductile materials: A critical indentation energy model based on continuum damage mechanics. Acta Mater 54:1101–1109CrossRef
8.
Zurück zum Zitat Swadener JG, Taljat B, Pharr GM (2001) Measurement of residual stress by load and depth sensing indentation with spherical indenter. J Mater Res 16:2091–2102CrossRef Swadener JG, Taljat B, Pharr GM (2001) Measurement of residual stress by load and depth sensing indentation with spherical indenter. J Mater Res 16:2091–2102CrossRef
9.
Zurück zum Zitat Lee YH, Kwon D (2003) Estimation of biaxial surface stress by instrumented indentation with sharp indenters. Acta Mater 52:1555–1563CrossRef Lee YH, Kwon D (2003) Estimation of biaxial surface stress by instrumented indentation with sharp indenters. Acta Mater 52:1555–1563CrossRef
10.
Zurück zum Zitat Hay J, Agee P, Herbert E (2010) Continuous stiffness measurement during instrumented indentation testing. Exp Tech 34:86–94CrossRef Hay J, Agee P, Herbert E (2010) Continuous stiffness measurement during instrumented indentation testing. Exp Tech 34:86–94CrossRef
11.
Zurück zum Zitat White CC, VanLandingham MR, Drzal PL, Chang NK, Chang SH (2005) Viscoelastic characterization of polymer using instrumented indentation. II. Dynamic testing. J Polym Sci B 13:1812–1824CrossRef White CC, VanLandingham MR, Drzal PL, Chang NK, Chang SH (2005) Viscoelastic characterization of polymer using instrumented indentation. II. Dynamic testing. J Polym Sci B 13:1812–1824CrossRef
12.
Zurück zum Zitat Balooch G, Marshall GW, Marshall SJ, Warren OL, Asif SAS, Balooch M (2003) Evaluation of a new modulus mapping technique to investigate microstructural features of human teeth. J Biomech 37:1223–1232CrossRef Balooch G, Marshall GW, Marshall SJ, Warren OL, Asif SAS, Balooch M (2003) Evaluation of a new modulus mapping technique to investigate microstructural features of human teeth. J Biomech 37:1223–1232CrossRef
13.
Zurück zum Zitat Yan J, Horihoshi A, Kuriyagawa T, Fukushima Y (2012) Manufacturing structured surface by combining microindentation and ultraprecision cutting. CIRP J Manuf Sci Technol 5:41–47CrossRef Yan J, Horihoshi A, Kuriyagawa T, Fukushima Y (2012) Manufacturing structured surface by combining microindentation and ultraprecision cutting. CIRP J Manuf Sci Technol 5:41–47CrossRef
14.
Zurück zum Zitat Möller S, Forrest SR (2002) Improved light out-coupling in organic light emitting diodes employing ordered microlens array. J Appl Phys 91:3324–3327CrossRef Möller S, Forrest SR (2002) Improved light out-coupling in organic light emitting diodes employing ordered microlens array. J Appl Phys 91:3324–3327CrossRef
15.
Zurück zum Zitat Lin HY, Ho YH, Lee JH, Chen KY, Fang JH, Hsu SC, Wei MK, Lin HY, Tsai JH, Wu TC (2008) Patterned microlens array for efficiency improvement of small-pixelated organic light-emitting devices. Opt Express 16:11044–11051CrossRef Lin HY, Ho YH, Lee JH, Chen KY, Fang JH, Hsu SC, Wei MK, Lin HY, Tsai JH, Wu TC (2008) Patterned microlens array for efficiency improvement of small-pixelated organic light-emitting devices. Opt Express 16:11044–11051CrossRef
16.
Zurück zum Zitat Chaudhri MM, Winter M (1988) The load-bearing area of a hardness indentation. J Phys D Appl Phys 21:370–374CrossRef Chaudhri MM, Winter M (1988) The load-bearing area of a hardness indentation. J Phys D Appl Phys 21:370–374CrossRef
17.
Zurück zum Zitat McElhaney KW, Vlassak JJ, Nix WD (1998) Determination of indenter tip geometry and indentation contact area for depth-sensing indentation experiments. J Mater Res 13:1300–1306CrossRef McElhaney KW, Vlassak JJ, Nix WD (1998) Determination of indenter tip geometry and indentation contact area for depth-sensing indentation experiments. J Mater Res 13:1300–1306CrossRef
18.
Zurück zum Zitat Oliver WC, Pharr GM (2004) Measurement of hardness and elastic modulus by instrumented indentation: Advances in understanding and refinements to methodology. J Mater Res 19:3–20CrossRef Oliver WC, Pharr GM (2004) Measurement of hardness and elastic modulus by instrumented indentation: Advances in understanding and refinements to methodology. J Mater Res 19:3–20CrossRef
19.
Zurück zum Zitat Cheng YT, Cheng CM (1998) Effects of ‘sinking in’ and ‘piling up’ on estimating the contact area under load in indentation. Philos Mag Lett 78:115–120CrossRef Cheng YT, Cheng CM (1998) Effects of ‘sinking in’ and ‘piling up’ on estimating the contact area under load in indentation. Philos Mag Lett 78:115–120CrossRef
20.
Zurück zum Zitat Dieter GE (1988) Mechanical metallurgy. McGraw Hill, London Dieter GE (1988) Mechanical metallurgy. McGraw Hill, London
21.
Zurück zum Zitat Lim YY, Chaudhri MM (1999) The effect of the indenter load on the nanohardness of ductile metals: an experimental study on polycrystalline work-hardened and annealed oxygen-free copper. Philos Mag A 79:2979–3000CrossRef Lim YY, Chaudhri MM (1999) The effect of the indenter load on the nanohardness of ductile metals: an experimental study on polycrystalline work-hardened and annealed oxygen-free copper. Philos Mag A 79:2979–3000CrossRef
22.
Zurück zum Zitat Davis JR (2001) Copper and copper alloys. ASM International, Novelty Davis JR (2001) Copper and copper alloys. ASM International, Novelty
23.
Zurück zum Zitat ISO/TR 29381:2008 (2008) Metallic materials - Measurement of mechanical properties by an instrumented indentation test - Indentation tensile properties. ISO, Geneva ISO/TR 29381:2008 (2008) Metallic materials - Measurement of mechanical properties by an instrumented indentation test - Indentation tensile properties. ISO, Geneva
24.
Zurück zum Zitat Lee JR, Jeon Ec, Kim H, Woo SW, Je TJ, Yoo YE, Lee ES (2015) Optical characterization and manufacturing of an optical plate for increasing light efficiency of LED systems. Int J Precis Eng Manuf 16:1355–1360CrossRef Lee JR, Jeon Ec, Kim H, Woo SW, Je TJ, Yoo YE, Lee ES (2015) Optical characterization and manufacturing of an optical plate for increasing light efficiency of LED systems. Int J Precis Eng Manuf 16:1355–1360CrossRef
Metadaten
Titel
A New Application of Dynamic Indentation: Indentation Machining Technology
verfasst von
E.-c. Jeon
J.-R. Lee
D.-H. Choi
H.-J. Choi
T.-J. Je
Publikationsdatum
02.08.2016
Verlag
Springer US
Erschienen in
Experimental Mechanics / Ausgabe 7/2017
Print ISSN: 0014-4851
Elektronische ISSN: 1741-2765
DOI
https://doi.org/10.1007/s11340-016-0187-5

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