Skip to main content
Top
Published in: Rheologica Acta 7/2013

01-07-2013 | Original Contribution

Spherical indentation analysis of stress relaxation for thin film viscoelastic materials

Authors: David Cheneler, Nazia Mehrban, James Bowen

Published in: Rheologica Acta | Issue 7/2013

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The mechanical testing of thin layers of soft materials is an important but difficult task. Spherical indentation provides a convenient method to ascertain material properties whilst minimising damage to the material by allowing testing to take place in situ. However, measurement of the viscoelastic properties of these soft materials is hindered by the absence of a convenient yet accurate model which takes into account the thickness of the material and the effects of the underlying substrate. To this end, the spherical indentation of a thin layer of viscoelastic solid material is analysed. It is assumed that the transient mechanical properties of the material can be described by the generalised standard linear solid model. This model is incorporated into the theory and then solved for the special case of a stress relaxation experiment taking into account the finite ramp time experienced in real experiments. An expression for the force as a function of the viscoelastic properties, layer thickness and indentation depth is given. The theory is then fitted to experimental data for the spherical indentation of poly(dimethyl)siloxane mixed with its curing agent to the ratios of 5:1, 10:1 and 20:1 in order to ascertain its transient shear moduli and relaxation time constants. It is shown that the theory correctly accounts for the effect of the underlying substrate and allows for the accurate measurement of the viscoelastic properties of thin layers of soft materials.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Appendix
Available only for authorised users
Literature
go back to reference Bufler H (1971) Theory of elasticity of a multilayered medium. J Elast 1:125–143CrossRef Bufler H (1971) Theory of elasticity of a multilayered medium. J Elast 1:125–143CrossRef
go back to reference Cao Y, Ma D, Raabe D (2009) The use of flat punch indentation to determine the viscoelastic properties in the time and frequency domains of a soft layer bonded to a rigid substrate. Acta Biomater 5(1):240–248CrossRef Cao Y, Ma D, Raabe D (2009) The use of flat punch indentation to determine the viscoelastic properties in the time and frequency domains of a soft layer bonded to a rigid substrate. Acta Biomater 5(1):240–248CrossRef
go back to reference Chadwick RS (2002) Axisymmetric indentation of a thin incompressible layer. SIAM J App Math 62(5):1520–1530CrossRef Chadwick RS (2002) Axisymmetric indentation of a thin incompressible layer. SIAM J App Math 62(5):1520–1530CrossRef
go back to reference Chen WT (1971) Computation of stresses and displacements in a layered elastic medium. Int J Eng Sci 9:775–800CrossRef Chen WT (1971) Computation of stresses and displacements in a layered elastic medium. Int J Eng Sci 9:775–800CrossRef
go back to reference Chen WT, Engel PA (1972) Impact and contact stress analysis in multilayer media. Int J Solids Struct 8:1257–1281CrossRef Chen WT, Engel PA (1972) Impact and contact stress analysis in multilayer media. Int J Solids Struct 8:1257–1281CrossRef
go back to reference Cox MAJ, Driessen NJB, Boerboom RA, Bouten CVC, Baaijens FPT (2008) Mechanical characterization of anisotropic planar biological soft tissues using finite indentation: experimental feasibility. J Biomat 41:422–429 Cox MAJ, Driessen NJB, Boerboom RA, Bouten CVC, Baaijens FPT (2008) Mechanical characterization of anisotropic planar biological soft tissues using finite indentation: experimental feasibility. J Biomat 41:422–429
go back to reference Darling EM, Zaucher S, Guilak F (2006) Viscoelastic properties of zonal articular chondrocytes measured by atomic force microscopy. Osteo Arth Cart 14:571–579CrossRef Darling EM, Zaucher S, Guilak F (2006) Viscoelastic properties of zonal articular chondrocytes measured by atomic force microscopy. Osteo Arth Cart 14:571–579CrossRef
go back to reference Darling EM, et al. (2007) Thin-layer model for viscoelastic, stress-relaxation testing of cells using atomic force microscopy: do cell properties reflect metastatic potential. Biophys J 92:1784–1791CrossRef Darling EM, et al. (2007) Thin-layer model for viscoelastic, stress-relaxation testing of cells using atomic force microscopy: do cell properties reflect metastatic potential. Biophys J 92:1784–1791CrossRef
go back to reference Dhaliwal RS, Rau IS (1970) The axisymmetric Boussinesq problem for a thick elastic layer under a punch of arbitrary profile. Int J Engr Sci 8:843–856CrossRef Dhaliwal RS, Rau IS (1970) The axisymmetric Boussinesq problem for a thick elastic layer under a punch of arbitrary profile. Int J Engr Sci 8:843–856CrossRef
go back to reference Dimitriadis EK, et al. (2002) Determination of elastic moduli of thin layers of soft material using the atomic force microscope. Biophys J 82:2798–2810CrossRef Dimitriadis EK, et al. (2002) Determination of elastic moduli of thin layers of soft material using the atomic force microscope. Biophys J 82:2798–2810CrossRef
go back to reference Dintwa E, Tijskens E, Ramon H (2008) On the accuracy of the Hertz model to describe the normal contact of soft elastic spheres. Granul Matter 10:209–221CrossRef Dintwa E, Tijskens E, Ramon H (2008) On the accuracy of the Hertz model to describe the normal contact of soft elastic spheres. Granul Matter 10:209–221CrossRef
go back to reference Domke J, Radmacher M (1998) Measuring the elastic properties of thin polymer films with the atomic force microscope. Langmuir 14:3320–3325CrossRef Domke J, Radmacher M (1998) Measuring the elastic properties of thin polymer films with the atomic force microscope. Langmuir 14:3320–3325CrossRef
go back to reference Ferry JD (1980) Viscoelastic properties of polymers, 3rd edn. Wiley, New York Ferry JD (1980) Viscoelastic properties of polymers, 3rd edn. Wiley, New York
go back to reference Findley WN, Onaran K (1976) Creep and relaxation of nonlinear viscoelastic materials. Dover Publications, New York Findley WN, Onaran K (1976) Creep and relaxation of nonlinear viscoelastic materials. Dover Publications, New York
go back to reference Fretigny C, Chateauminois A (2000) Solution for the elastic field in a layered medium under axisymmetric contact loading. J Phys D: Appl Phys 40:5418–5428CrossRef Fretigny C, Chateauminois A (2000) Solution for the elastic field in a layered medium under axisymmetric contact loading. J Phys D: Appl Phys 40:5418–5428CrossRef
go back to reference Graham GAC, Sabin GCW (1973) The correspondence principle of linear viscoelasticity for problems that involve time-dependent regions. Int J Eng Sci 11(1):123–140CrossRef Graham GAC, Sabin GCW (1973) The correspondence principle of linear viscoelasticity for problems that involve time-dependent regions. Int J Eng Sci 11(1):123–140CrossRef
go back to reference Greenwood JA (2010) Contact between an axisymmetric indenter and a viscoelastic half-space. Int J Mech Sci 52(6):829–835CrossRef Greenwood JA (2010) Contact between an axisymmetric indenter and a viscoelastic half-space. Int J Mech Sci 52(6):829–835CrossRef
go back to reference Hertz H (1882) Uber die, Beruhrung fester, elastischer Korper. J Reine Angew Math 92:156–171 Hertz H (1882) Uber die, Beruhrung fester, elastischer Korper. J Reine Angew Math 92:156–171
go back to reference Jardet V, Morel P (2003) Viscoelastic effects on the scratch resistance of polymers: relationship between mechanical properties and scratch properties at various temperatures. Prog Org Coat 48(2–4):322–331CrossRef Jardet V, Morel P (2003) Viscoelastic effects on the scratch resistance of polymers: relationship between mechanical properties and scratch properties at various temperatures. Prog Org Coat 48(2–4):322–331CrossRef
go back to reference Landau LD, Liftshitz EM (1986) Course of theoretical physics: theory of elasticity. Elsevier, Oxford Landau LD, Liftshitz EM (1986) Course of theoretical physics: theory of elasticity. Elsevier, Oxford
go back to reference Lee EH, Radok JRM (1960) The contact problem for viscoelastic bodies. J App Mech Trans ASME 27:438–444CrossRef Lee EH, Radok JRM (1960) The contact problem for viscoelastic bodies. J App Mech Trans ASME 27:438–444CrossRef
go back to reference Levental I, et al. (2010) A simple indentation device for measuring micrometer-scale tissue stiffness. J Phys Condens Matter 22:194120CrossRef Levental I, et al. (2010) A simple indentation device for measuring micrometer-scale tissue stiffness. J Phys Condens Matter 22:194120CrossRef
go back to reference Moreno-Flores S, et al. (2010) Stress relaxation and creep on living cells with the atomic force microscope: a means to calculate elastic moduli and viscosities of cell components. Nanotech 21:445101CrossRef Moreno-Flores S, et al. (2010) Stress relaxation and creep on living cells with the atomic force microscope: a means to calculate elastic moduli and viscosities of cell components. Nanotech 21:445101CrossRef
go back to reference Oyen ML (2006) Analytical techniques for indentation of viscoelastic materials. Philos Mag 86(33):5625–5641CrossRef Oyen ML (2006) Analytical techniques for indentation of viscoelastic materials. Philos Mag 86(33):5625–5641CrossRef
go back to reference Pailler-Mattei C, Bec S, Zahouani H (2008) In vivo measurements of the elastic mechanical properties of human skin by indentation tests. Med Eng Phys 30:599–606CrossRef Pailler-Mattei C, Bec S, Zahouani H (2008) In vivo measurements of the elastic mechanical properties of human skin by indentation tests. Med Eng Phys 30:599–606CrossRef
go back to reference Rizzo FJ, Shippy DJ (1971) An application of the correspondence principle of linear viscoelasticity theory. SIAM J Appl Math 21(2):321–336CrossRef Rizzo FJ, Shippy DJ (1971) An application of the correspondence principle of linear viscoelasticity theory. SIAM J Appl Math 21(2):321–336CrossRef
go back to reference Ting TCT (1966) The contact stresses between a rigid indenter and a viscoelastic half-space. J App Mech Trans ASME 27:845–854CrossRef Ting TCT (1966) The contact stresses between a rigid indenter and a viscoelastic half-space. J App Mech Trans ASME 27:845–854CrossRef
go back to reference Tu Y-O, Gazis DC (1964) The contact problem of a plate pressed between two spheres. Trans ASME J Appl Mech 31:659–666CrossRef Tu Y-O, Gazis DC (1964) The contact problem of a plate pressed between two spheres. Trans ASME J Appl Mech 31:659–666CrossRef
go back to reference Wakatsuki T, et al. (2001) Effects of cytochalasin D and latrunculin B on mechanical properties of cells. J Cell Sci 114(5):1025–1036 Wakatsuki T, et al. (2001) Effects of cytochalasin D and latrunculin B on mechanical properties of cells. J Cell Sci 114(5):1025–1036
go back to reference Zhang CY, Zhang YW, Zeng KY (2004) Extracting the mechanical properties of a viscoelastic polymeric film on a hard elastic substrate. J Mater Res 19(10):3053–3061CrossRef Zhang CY, Zhang YW, Zeng KY (2004) Extracting the mechanical properties of a viscoelastic polymeric film on a hard elastic substrate. J Mater Res 19(10):3053–3061CrossRef
Metadata
Title
Spherical indentation analysis of stress relaxation for thin film viscoelastic materials
Authors
David Cheneler
Nazia Mehrban
James Bowen
Publication date
01-07-2013
Publisher
Springer-Verlag
Published in
Rheologica Acta / Issue 7/2013
Print ISSN: 0035-4511
Electronic ISSN: 1435-1528
DOI
https://doi.org/10.1007/s00397-013-0707-5

Other articles of this Issue 7/2013

Rheologica Acta 7/2013 Go to the issue

Premium Partners