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Anisotropic mode-dependent damage of cortical bone using the extended finite element method (XFEM)

机译:使用扩展有限元方法(XFEM)的各向异性各向异性的皮质骨损伤

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Anisotropic damage initiation criteria were developed for extended finite element method (XFEM) prediction of crack initiation and propagation in cortical bone. This anisotropic damage model was shown to accurately predict the dependence of crack propagation patterns and fracture toughness on mode mixity and on osteon orientations, as observed experimentally. Four initiation criteria were developed to define crack trajectories relative to osteon orientations and max principal stress for single and mixed mode fracture. Alternate failure strengths for tensile and compressive loading were defined to simulate the asymmetric failure of cortical bone. The dependence of cortical bone elasticity and failure properties on osteon orientation is analogous to the dependence of composite properties on fibre orientation. Hence, three of the criteria developed in the present study were based upon the Hashin damage criteria. The fourth criterion developed was defined in terms of the max principal stress. This criterion initiated off axis crack growth perpendicular to the direction of the max principal stress. The unique set of parameters calibrated accurately predicted; (i) the relationship between fracture energy and osteon alignment, (ii) the alternate crack patterns for both varying osteon orientations and loading angle. Application of the developed anisotropic damage models to cortical bone screw pullout highlights the potential application for orthopaedic device design evaluation.
机译:为扩展有限元方法(XFEM)预测皮层骨中裂纹的萌生和扩展建立了各向异性损伤萌生标准。实验表明,这种各向异性损伤模型可以准确预测裂纹扩展方式和断裂韧性对模态混合度和骨取向的依赖性。开发了四个初始标准来定义相对于骨取向和单模和混合模断裂的最大主应力的裂纹轨迹。定义了拉伸和压缩载荷的替代破坏强度,以模拟皮质骨的不对称破坏。皮质骨弹性和破坏特性对骨取向的依赖性类似于复合材料对纤维取向的依赖性。因此,在本研究中开发的三个标准是基于Hashin损伤标准。制定的第四个标准是根据最大主应力定义的。该标准引发垂直于最大主应力方向的轴裂纹扩展。精确校准预测的独特参数集; (i)骨折能量与骨取向之间的关系,(ii)不同骨取向和加载角度的交替裂纹模式。将开发的各向异性损伤模型应用于皮质骨螺钉拔出突出了骨科器械设计评估的潜在应用。

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