Friction of human skin against smooth and rough glass as a function of the contact pressure

The friction behaviour of human skin was studied by combining friction measurements using a tri-axial force plate with skin contact area measurements using a pressure sensitive film. Four subjects carried out friction measurement series, in which they rubbed the index finger pad and the edge of the...

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Vydané v:Tribology international Ročník 42; číslo 11; s. 1565 - 1574
Hlavní autori: Derler, S., Gerhardt, L.-C., Lenz, A., Bertaux, E., Hadad, M.
Médium: Journal Article Konferenčný príspevok..
Jazyk:English
Vydavateľské údaje: Kidlington Elsevier Ltd 01.12.2009
Elsevier
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ISSN:0301-679X, 1879-2464
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Abstract The friction behaviour of human skin was studied by combining friction measurements using a tri-axial force plate with skin contact area measurements using a pressure sensitive film. Four subjects carried out friction measurement series, in which they rubbed the index finger pad and the edge of the hand against a smooth and a rough glass surface under dry and wet conditions. The normal loads were varied up to values of 50 N, leading to skin contact pressures of up to 120 kPa. The analysis of the pressure dependence of friction coefficients of skin for contrasting sliding conditions allowed to determine the involved friction mechanisms on the basis of theoretical concepts for the friction of elastomers. Adhesion was found to be involved in all investigated cases of friction between skin and glass. If adhesion mechanisms predominated (skin against smooth glass in the dry condition and skin against rough glass in the wet condition), the friction coefficients were generally high (typically >1) and decreased with increasing contact pressure according to power laws with typical exponents between −0.5 and −0.2. Contributions to the friction coefficient due to viscoelastic skin deformations were estimated to be relatively small (<0.2). In those cases where the deformation component of friction played an important role in connection with adhesion (skin against rough glass in the dry condition), the friction coefficients of skin were typically around 0.5 and their pressure dependence showed weak trends characterised by exponents ranging from −0.1 to +0.2. If hydrodynamic lubrication came into play (skin sliding on smooth glass in the wet condition), the friction coefficients were strongly reduced compared to dry friction (<1), and their decrease with increasing contact pressures was characterised by exponents of <−0.7.
AbstractList The friction behaviour of human skin was studied by combining friction measurements using a tri-axial force plate with skin contact area measurements using a pressure sensitive film. Four subjects carried out friction measurement series, in which they rubbed the index finger pad and the edge of the hand against a smooth and a rough glass surface under dry and wet conditions. The normal loads were varied up to values of 50 N, leading to skin contact pressures of up to 120 kPa. The analysis of the pressure dependence of friction coefficients of skin for contrasting sliding conditions allowed to determine the involved friction mechanisms on the basis of theoretical concepts for the friction of elastomers. Adhesion was found to be involved in all investigated cases of friction between skin and glass. If adhesion mechanisms predominated (skin against smooth glass in the dry condition and skin against rough glass in the wet condition), the friction coefficients were generally high (typically >1) and decreased with increasing contact pressure according to power laws with typical exponents between −0.5 and −0.2. Contributions to the friction coefficient due to viscoelastic skin deformations were estimated to be relatively small (<0.2). In those cases where the deformation component of friction played an important role in connection with adhesion (skin against rough glass in the dry condition), the friction coefficients of skin were typically around 0.5 and their pressure dependence showed weak trends characterised by exponents ranging from −0.1 to +0.2. If hydrodynamic lubrication came into play (skin sliding on smooth glass in the wet condition), the friction coefficients were strongly reduced compared to dry friction (<1), and their decrease with increasing contact pressures was characterised by exponents of <−0.7.
Author Bertaux, E.
Lenz, A.
Derler, S.
Gerhardt, L.-C.
Hadad, M.
Author_xml – sequence: 1
  givenname: S.
  surname: Derler
  fullname: Derler, S.
  email: siegfried.derler@empa.ch
  organization: Laboratory for Protection and Physiology, Swiss Federal Laboratories for Materials Testing and Research (Empa), Lerchenfeldstrasse 5, CH-9014 St. Gallen, Switzerland
– sequence: 2
  givenname: L.-C.
  surname: Gerhardt
  fullname: Gerhardt, L.-C.
  organization: Laboratory for Protection and Physiology, Swiss Federal Laboratories for Materials Testing and Research (Empa), Lerchenfeldstrasse 5, CH-9014 St. Gallen, Switzerland
– sequence: 3
  givenname: A.
  surname: Lenz
  fullname: Lenz, A.
  organization: Laboratory for Protection and Physiology, Swiss Federal Laboratories for Materials Testing and Research (Empa), Lerchenfeldstrasse 5, CH-9014 St. Gallen, Switzerland
– sequence: 4
  givenname: E.
  surname: Bertaux
  fullname: Bertaux, E.
  organization: Laboratory for Protection and Physiology, Swiss Federal Laboratories for Materials Testing and Research (Empa), Lerchenfeldstrasse 5, CH-9014 St. Gallen, Switzerland
– sequence: 5
  givenname: M.
  surname: Hadad
  fullname: Hadad, M.
  organization: Laboratory for Materials Processing and Characterization, Swiss Federal Laboratories for Materials Testing and Research (Empa), Feuerwerkerstrasse 39, CH-3602 Thun, Switzerland
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Issue 11
Keywords Hydrodynamic lubrication
Deformation
Contact area
Sliding friction coefficient
Adhesion
Skin tribology
Roughness
Glass
Dry friction
Contact stress
Friction coefficient
Contact pressure
Axial load
Power law
Human
Skin friction
Finger
Mechanical contact
Rough surface
Contact surface
Pressure coefficient
Plate
Pressure dependence
Pressure effect
Hydrostatic pressure
Pressure measurement
Language English
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Snippet The friction behaviour of human skin was studied by combining friction measurements using a tri-axial force plate with skin contact area measurements using a...
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StartPage 1565
SubjectTerms Adhesion
Applied sciences
Contact area
Deformation
Exact sciences and technology
Friction, wear, lubrication
Hydrodynamic lubrication
Machine components
Mechanical engineering. Machine design
Skin tribology
Sliding friction coefficient
Title Friction of human skin against smooth and rough glass as a function of the contact pressure
URI https://dx.doi.org/10.1016/j.triboint.2008.11.009
Volume 42
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