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Article Dans Une Revue Biomechanics and Modeling in Mechanobiology Année : 2020

A modified Coulomb's law for the tangential debonding of osseointegrated implants

Katharina Immel
Thang X Duong
  • Fonction : Auteur
Roger A Sauer

Résumé

Cementless implants are widely used in orthopedic and oral surgery. However, debonding-related failure still occurs at the bone-implant interface. It remains difficult to predict such implant failure since the underlying osseointegration phenomena are still poorly understood. Especially in terms of friction and adhesion at the macro-scale, there is a lack of data and reliable models. The aim of this work is to present a new friction formulation that can model the tangential contact behavior between osseointegrated implants and bone tissue, with focus on debonding. The classical Coulomb's law is combined with a state variable friction law to model a displacement-dependent friction coefficient. A smooth state function, based on the sliding distance, is used to model implant debonding. The formulation is implemented in a 3D nonlinear finite element framework, and it is calibrated with experimental data and compared to an analytical model for mode III cleavage of a coin-shaped, titanium implant [32]. Overall, the results show close agreement with the experimental data, especially the peak and the softening part of the torque curve with a relative error of less than 2.25 %. In addition, better estimates of the bone's shear modulus and the adhesion energy are obtained. The proposed model is particularly suitable to account for partial osseointegration, as is also shown.
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Dates et versions

hal-02411362 , version 1 (14-12-2019)

Identifiants

  • HAL Id : hal-02411362 , version 1

Citer

Katharina Immel, Thang X Duong, Vu-Hieu Nguyen, Guillaume Haiat, Roger A Sauer. A modified Coulomb's law for the tangential debonding of osseointegrated implants. Biomechanics and Modeling in Mechanobiology, 2020, 19 (3), pp.1091-1108. ⟨hal-02411362⟩
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