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

机译:一个改进的库仑法律,即对骨整合植入物的切向剥离

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Cementless implants are widely used in orthopedic and dental 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 macroscale, there is a lack of data and reliable models. The aim of this work was 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 (Mathieu et al. in J Mech Behav Biomed Mater 8(1):194-203, 2012). Overall, the results show a 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.
机译:无粘土的植入物广泛用于骨科和牙科手术。但是,骨刻界面仍然发生剥离相关的失败。由于潜在的骨整合现象仍然很清楚,因此仍然难以预测这种植入物失败。特别是在Macroscale在摩擦和粘附方面,缺乏数据和可靠的模型。这项工作的目的是提出一种新的摩擦制剂,可以模拟骨整合植入物和骨组织之间的切向接触行为,重点是剥夺。经典库仑的定律与状态可变摩擦法相结合,以模拟位移依赖性摩擦系数。基于滑动距离的平滑状态功能用于模拟植入剥离。该配方在3D非线性有限元框架中实施,并用实验数据校准,并与模型III裂解的模型模型进行校准(Mathieu等人。在J MECH行业生物保修中1):194-203,2012)。总体而言,结果表明,与实验数据,特别是扭矩曲线的峰值和软化部分的相对误差小于2.25%。此外,获得了骨剪切模量和粘合能量的更好估计。所提出的模型特别适用于占部分渗透组成。

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