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Erschienen in: Experimental Mechanics 7/2018

09.08.2018

The Effect of Edge Compliance on the Contact between a Spherical Indenter and a High-Aspect-Ratio Rectangular Fin

verfasst von: G. Stan, E. Mays, H. J. Yoo, S. W. King

Erschienen in: Experimental Mechanics | Ausgabe 7/2018

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Abstract

In the last two decades, significant progress has been made on developing new nanoscale mechanical property measurement techniques including instrumented indentation and atomic force microscopy based techniques. The changes in the tip-sample contact mechanics during measurements uniquely modify the displacement and force sensed by a measurement sensor and much effort is dedicated to correctly retrieve the sample mechanical properties from the measured signal. It turns out that in many cases, for the sake of simplicity, a simple contact mechanics model is adopted by overlooking the complexity of the actual contact geometry. In this work, a newly developed matrix formulation is used to solve the stress and strain equations for samples with edge geometries. Such sample geometries are often encountered in today’s nanoscale integrated electronics in the form of high-aspect-ratio fins with widths in the range of tens of nanometers. In the matrix formulation, the fin geometries can be easily modeled as adjacent overlapped half-spaces and the contact problem can be solved by a numerical implementation of the conjugate gradient method. This method is very versatile in terms of contact geometry and contact interaction, either non-adhesive or adhesive. The discussion will incorporate a few model examples that are relevant for the nanoscale mechanics investigated by intermittent contact resonance AFM (ICR-AFM) on low-k dielectric fins of high-aspect-ratio. In such ICR-AFM measurements, distinct dependence of the contact stiffness was observed as a function of the applied force and distance from the edges of the fins. These dependences were correctly predicted by the model and used to retrieve the mechanical changes undergone by fins during fabrication and processing.

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Literatur
1.
Zurück zum Zitat Sneddon IN (1965) The relationship between load and penetration in the axisymmetric Boussinesq problem for a punch of arbitrary profile. Int J Engng Sci 3:47–57CrossRef Sneddon IN (1965) The relationship between load and penetration in the axisymmetric Boussinesq problem for a punch of arbitrary profile. Int J Engng Sci 3:47–57CrossRef
2.
Zurück zum Zitat Doerner MF, Nix WD (1986) A method for interpreting the data from depth-sensing indentation instruments. J Mater Res 1(4):601–609CrossRef Doerner MF, Nix WD (1986) A method for interpreting the data from depth-sensing indentation instruments. J Mater Res 1(4):601–609CrossRef
3.
Zurück zum Zitat Oliver WC, Pharr GM (1992) An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation measurements. J Mater Res 7(6):1564–1583CrossRef Oliver WC, Pharr GM (1992) An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation measurements. J Mater Res 7(6):1564–1583CrossRef
4.
Zurück zum Zitat Asif SAS, Wahl KJ, Colton RJ (1999) Nanoindentation and contact stiffness measurement using force modulation with a capacitive load-displacement transducer. Rev Sci Instrum 70(5):2408–2413CrossRef Asif SAS, Wahl KJ, Colton RJ (1999) Nanoindentation and contact stiffness measurement using force modulation with a capacitive load-displacement transducer. Rev Sci Instrum 70(5):2408–2413CrossRef
5.
Zurück zum Zitat Burnham NA, Colton RJ (1989) Measuring the nanomechanical properties and surface forces of materials using an atomic force microscope. J Vac Sci Technol A 7:2906–2913CrossRef Burnham NA, Colton RJ (1989) Measuring the nanomechanical properties and surface forces of materials using an atomic force microscope. J Vac Sci Technol A 7:2906–2913CrossRef
6.
Zurück zum Zitat Maivald P, Butt HJ, Gould SAC, Prater CB, Drake B, Guriey JA, Elings VB, Hansma PK (1991) Using force modulation to image surface elasticities with the atomic force microscope. Nanotechnology 2:103–106CrossRef Maivald P, Butt HJ, Gould SAC, Prater CB, Drake B, Guriey JA, Elings VB, Hansma PK (1991) Using force modulation to image surface elasticities with the atomic force microscope. Nanotechnology 2:103–106CrossRef
7.
Zurück zum Zitat Rabe U, Janser K, Arnold W (1996) Vibrations of free and surface-coupled atomic force microscope cantilevers: theory and experiment. Rev Sci Instrum 67:3281–3293CrossRef Rabe U, Janser K, Arnold W (1996) Vibrations of free and surface-coupled atomic force microscope cantilevers: theory and experiment. Rev Sci Instrum 67:3281–3293CrossRef
8.
Zurück zum Zitat Pittenger B, Erina N, Su C (2010) Quantitative mechanical property mapping at the nanoscale with PeakForce QNM Bruker Application Note AN128 Pittenger B, Erina N, Su C (2010) Quantitative mechanical property mapping at the nanoscale with PeakForce QNM Bruker Application Note AN128
9.
Zurück zum Zitat Hertz H (1881) Ueber die Berührung fester elastischer Körper. J Reine Angew Math 92:156–171MATH Hertz H (1881) Ueber die Berührung fester elastischer Körper. J Reine Angew Math 92:156–171MATH
10.
Zurück zum Zitat Johnson KL (1985) Contact mechanics. Cambridge University Press, CambridgeCrossRef Johnson KL (1985) Contact mechanics. Cambridge University Press, CambridgeCrossRef
11.
Zurück zum Zitat Johnson KL, Kendall K, Roberts AD (1971) Surface energy and the contact of elastic solids. Proc Roy Soc London A 324:301–313CrossRef Johnson KL, Kendall K, Roberts AD (1971) Surface energy and the contact of elastic solids. Proc Roy Soc London A 324:301–313CrossRef
12.
Zurück zum Zitat Derjaguin BV, Muller VM, Toporov YP (1975) Effect of contact on the adhesion of particles. J Colloid Interface Sci 53:314–326CrossRef Derjaguin BV, Muller VM, Toporov YP (1975) Effect of contact on the adhesion of particles. J Colloid Interface Sci 53:314–326CrossRef
13.
Zurück zum Zitat Stan G, Mays E, Yoo HJ, King SW (2016) Nanoscale tomographic reconstruction of the subsurface mechanical properties of low-k high-aspect ratio patterns. Nanotechnology 27:485706 (9pp)CrossRef Stan G, Mays E, Yoo HJ, King SW (2016) Nanoscale tomographic reconstruction of the subsurface mechanical properties of low-k high-aspect ratio patterns. Nanotechnology 27:485706 (9pp)CrossRef
14.
Zurück zum Zitat Stan G, Gates RS (2014) Intermittent contact resonance atomic force microscopy. Nanotechnology 25:245702 (8pp)CrossRef Stan G, Gates RS (2014) Intermittent contact resonance atomic force microscopy. Nanotechnology 25:245702 (8pp)CrossRef
15.
Zurück zum Zitat Maex K, Baklanov MR, Shamiryan D, Iacopi F, Brongersma SH, Yanovitskaya ZS (2003) Low dielectric constant materials for microelectronics. J Appl Phys 93:8793–8841CrossRef Maex K, Baklanov MR, Shamiryan D, Iacopi F, Brongersma SH, Yanovitskaya ZS (2003) Low dielectric constant materials for microelectronics. J Appl Phys 93:8793–8841CrossRef
16.
Zurück zum Zitat Baklanov MR, de Marneffe JF, Shamiryan D, Urbanowicz AM, Shi H, Rakhimova TV, Huang H, Ho PS (2013) Plasma processing of low-k dielectrics. J Appl Phys 113:041101 (41 pp)CrossRef Baklanov MR, de Marneffe JF, Shamiryan D, Urbanowicz AM, Shi H, Rakhimova TV, Huang H, Ho PS (2013) Plasma processing of low-k dielectrics. J Appl Phys 113:041101 (41 pp)CrossRef
17.
Zurück zum Zitat Vanstreels K, Wu C, Baklanov MR (2015) Mechanical stability of porous low-k dielectrics. ECS J Solid State Sci Technol 4:N3058–N3064CrossRef Vanstreels K, Wu C, Baklanov MR (2015) Mechanical stability of porous low-k dielectrics. ECS J Solid State Sci Technol 4:N3058–N3064CrossRef
18.
Zurück zum Zitat Stan G, Gates RS, Hu Kjoller QK, Prater C, Singh KJ, Mays E, King SW (2017) Relationships between chemical structure, mechanical properties and materials processing in nanopatterned organosilicate fins. Beilstein J Nanotechnol 8:863–871CrossRef Stan G, Gates RS, Hu Kjoller QK, Prater C, Singh KJ, Mays E, King SW (2017) Relationships between chemical structure, mechanical properties and materials processing in nanopatterned organosilicate fins. Beilstein J Nanotechnol 8:863–871CrossRef
19.
Zurück zum Zitat Hanson MT, Keer LM (1991) Analysis of edge effects on rail-wheel contact. Wear 144:39–55CrossRef Hanson MT, Keer LM (1991) Analysis of edge effects on rail-wheel contact. Wear 144:39–55CrossRef
20.
Zurück zum Zitat Yu CC, Keer LM (1996) Edge effect on elastic-plastic rolling/sliding contacts. Comput Mech 18:259–268CrossRef Yu CC, Keer LM (1996) Edge effect on elastic-plastic rolling/sliding contacts. Comput Mech 18:259–268CrossRef
21.
Zurück zum Zitat Hetenyi M (1970) A general solution for the elastic quarter space. Am Soc Mech Eng 37E:7076MATH Hetenyi M (1970) A general solution for the elastic quarter space. Am Soc Mech Eng 37E:7076MATH
22.
Zurück zum Zitat Love AEH (1929) The stress produced in a semi-infinite solid by pressure on part of the boundary. Philos Trans R Soc London A 228:377–420CrossRef Love AEH (1929) The stress produced in a semi-infinite solid by pressure on part of the boundary. Philos Trans R Soc London A 228:377–420CrossRef
23.
Zurück zum Zitat Keer LM, Lee JC, Mura T (1983) Hetenyi’s elastic quarter space problem revisited. Int J Solids Structures 19:497–508MathSciNetCrossRef Keer LM, Lee JC, Mura T (1983) Hetenyi’s elastic quarter space problem revisited. Int J Solids Structures 19:497–508MathSciNetCrossRef
24.
Zurück zum Zitat Armani N, Keer LM, Mura T (1983) Non-Hertzian contact stress analysis for an elastic half-space-normal and sliding contact. Int J Solids Structures 19:357–373CrossRef Armani N, Keer LM, Mura T (1983) Non-Hertzian contact stress analysis for an elastic half-space-normal and sliding contact. Int J Solids Structures 19:357–373CrossRef
25.
Zurück zum Zitat Keer LM, Lee JC, Mura T (1984) A contact problem for the elastic quarter space. Int J Solids Structures 20:513–524CrossRef Keer LM, Lee JC, Mura T (1984) A contact problem for the elastic quarter space. Int J Solids Structures 20:513–524CrossRef
26.
Zurück zum Zitat Hanson MT, Keer LM (1990) A simplified analysis for an elastic quarter-space. Quart J Mech Appl Math 43:561–588MathSciNetCrossRef Hanson MT, Keer LM (1990) A simplified analysis for an elastic quarter-space. Quart J Mech Appl Math 43:561–588MathSciNetCrossRef
27.
Zurück zum Zitat Zhang ZM, Wang W, Wong PL (2013) An explicit solution for the elastic quarter-space problem in matrix formulation. Int J Solids Structures 50:976–980CrossRef Zhang ZM, Wang W, Wong PL (2013) An explicit solution for the elastic quarter-space problem in matrix formulation. Int J Solids Structures 50:976–980CrossRef
28.
Zurück zum Zitat Zhang H, Wang W, Zhang S, Zhao Z (2016) Modeling of finite-length line contact problem with consideration of two free-end surfaces. J Tribology 138:021402–021410CrossRef Zhang H, Wang W, Zhang S, Zhao Z (2016) Modeling of finite-length line contact problem with consideration of two free-end surfaces. J Tribology 138:021402–021410CrossRef
29.
Zurück zum Zitat Stan G The effect of edge compliance on the adhesive contact between a spherical indenter and a quarter-space. (to be submitted) Stan G The effect of edge compliance on the adhesive contact between a spherical indenter and a quarter-space. (to be submitted)
30.
Zurück zum Zitat Maugis D (1992) Adhesion of spheres: the JKR-DMT transition using the Dugdale model. J Colloid Interface Sci 150:243–269CrossRef Maugis D (1992) Adhesion of spheres: the JKR-DMT transition using the Dugdale model. J Colloid Interface Sci 150:243–269CrossRef
31.
Zurück zum Zitat Stan G, Solares SD, Pittenger B, Erina N, Su C (2014) Nanoscale mechanics by tomographic contact resonance atomic force microscopy. Nanoscale 6:962–969CrossRef Stan G, Solares SD, Pittenger B, Erina N, Su C (2014) Nanoscale mechanics by tomographic contact resonance atomic force microscopy. Nanoscale 6:962–969CrossRef
32.
Zurück zum Zitat Stan G, Gates RS, Kavuri P, Torres J, Michalak D, Ege C, Bielefeld J, King SW (2014) Mechanical property changes in porous low-k dielectric thin films during processing. Appl Phys Lett 105:152906 (4 pp)CrossRef Stan G, Gates RS, Kavuri P, Torres J, Michalak D, Ege C, Bielefeld J, King SW (2014) Mechanical property changes in porous low-k dielectric thin films during processing. Appl Phys Lett 105:152906 (4 pp)CrossRef
33.
Zurück zum Zitat Bazrafshan M, de Rooij MB, Valefi M, Schipper DJ (2017) Numerical method for the adhesive normal contact analysis based on a Dugdale approximation. Tribol Int 112:117–128CrossRef Bazrafshan M, de Rooij MB, Valefi M, Schipper DJ (2017) Numerical method for the adhesive normal contact analysis based on a Dugdale approximation. Tribol Int 112:117–128CrossRef
34.
Zurück zum Zitat Rey V, Anciaux G, Molinari JF (2017) Normal adhesive contact on rough surfaces: efficient algorithm for FFT-based BEM resolution. Comput Mech 60:69–81MathSciNetCrossRef Rey V, Anciaux G, Molinari JF (2017) Normal adhesive contact on rough surfaces: efficient algorithm for FFT-based BEM resolution. Comput Mech 60:69–81MathSciNetCrossRef
35.
Zurück zum Zitat Chawla JS, Singh KJ, Michalak DJ, Schenker R, Jezewski C, Krist B, Gstrein F, Indukuri TK, Yoo HJ (2014) Patterning challenges in the fabrication of 12 nm half-pitch dual damascene copper ultra low-k interconnects. Proc SPIE 9054:905404–905408CrossRef Chawla JS, Singh KJ, Michalak DJ, Schenker R, Jezewski C, Krist B, Gstrein F, Indukuri TK, Yoo HJ (2014) Patterning challenges in the fabrication of 12 nm half-pitch dual damascene copper ultra low-k interconnects. Proc SPIE 9054:905404–905408CrossRef
36.
Zurück zum Zitat Bailey S, Mays E, Michalak DJ, Chebiam R, King S, Sooryakumar R (2013) Mechanical properties of high porosity low-k dielectric nano-films determined by Brillouin light scattering. J Phys D Appl Phys 46:045308CrossRef Bailey S, Mays E, Michalak DJ, Chebiam R, King S, Sooryakumar R (2013) Mechanical properties of high porosity low-k dielectric nano-films determined by Brillouin light scattering. J Phys D Appl Phys 46:045308CrossRef
37.
Zurück zum Zitat Liu S, Wang Q, Liu G (2000) A versatile method of discrete convolution and FFT (DC-FFT) for contact analyses. Wear 243:101–111CrossRef Liu S, Wang Q, Liu G (2000) A versatile method of discrete convolution and FFT (DC-FFT) for contact analyses. Wear 243:101–111CrossRef
38.
Zurück zum Zitat Polonsky IA, Keer LM (1999) A numerical method for solving rough contact problems based on the multi-level multi-summation and conjugate gradient techniques. Wear 231:206–219CrossRef Polonsky IA, Keer LM (1999) A numerical method for solving rough contact problems based on the multi-level multi-summation and conjugate gradient techniques. Wear 231:206–219CrossRef
40.
Zurück zum Zitat Jakes JE, Frihart CR, Beecher JF, Moon RJ, Resto PJ, Melgarejo ZH, Surez OM, Baumgart H, Elmustafa AA, Stone DS (2009) Nanoindentation near the edge. J Mater Res 24:1016–1031CrossRef Jakes JE, Frihart CR, Beecher JF, Moon RJ, Resto PJ, Melgarejo ZH, Surez OM, Baumgart H, Elmustafa AA, Stone DS (2009) Nanoindentation near the edge. J Mater Res 24:1016–1031CrossRef
41.
Zurück zum Zitat Jakes JE, Stone DS (2010) The edge effect in nanoindentation. Phil Mag 91:1387–1399CrossRef Jakes JE, Stone DS (2010) The edge effect in nanoindentation. Phil Mag 91:1387–1399CrossRef
Metadaten
Titel
The Effect of Edge Compliance on the Contact between a Spherical Indenter and a High-Aspect-Ratio Rectangular Fin
verfasst von
G. Stan
E. Mays
H. J. Yoo
S. W. King
Publikationsdatum
09.08.2018
Verlag
Springer US
Erschienen in
Experimental Mechanics / Ausgabe 7/2018
Print ISSN: 0014-4851
Elektronische ISSN: 1741-2765
DOI
https://doi.org/10.1007/s11340-018-0421-4

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