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An enhanced version of a bone-remodelling model based on the continuum damage mechanics theory

机译:基于连续损伤力学理论的骨重塑模型的增强版本

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The purpose of this work was to propose an enhancement of Doblare and Garcia's internal bone remodelling model based on the continuum damage mechanics (CDM) theory. In their paper, they stated that the evolution of the internal variables of the bone microstructure, and its incidence on the modification of the elastic constitutive parameters, may be formulated following the principles of CDM, although no actual damage was considered. The resorption and apposition criteria (similar to the damage criterion) were expressed in terms of a mechanical stimulus. However, the resorption criterion is lacking a dimensional consistency with the remodelling rate. We propose here an enhancement to this resorption criterion, insuring the dimensional consistency while retaining the physical properties of the original remodelling model. We then analyse the change in the resorption criterion hypersurface in the stress space for a two-dimensional (2D) analysis. We finally apply the new formulation to analyse the structural evolution of a 2D femur. This analysis gives results consistent with the original model but with a faster and more stable convergence rate.
机译:这项工作的目的是基于连续损伤力学(CDM)理论提出Doblare和Garcia的内部骨骼重塑模型的增强方法。他们在论文中指出,尽管未考虑实际损害,但可以遵循CDM原理来制定骨骼微观结构内部变量的演变及其在改变弹性本构参数方面的发生率。吸收和并置标准(类似于损伤标准)以机械刺激的形式表示。但是,再吸收标准与重塑速率缺乏尺寸一致性。我们在这里提出对此吸收标准的增强,在确保尺寸一致性的同时保留原始重塑模型的物理特性。然后,我们针对二维(2D)分析来分析应力空间中超吸收标准超表面的变化。我们最终将新的公式应用于分析2D股骨的结构演变。该分析给出的结果与原始模型一致,但收敛速度更快,更稳定。

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