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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Calibration of a constitutive model for the post-yield behaviour of cortical bone.
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Calibration of a constitutive model for the post-yield behaviour of cortical bone.

机译:皮质骨屈服后行为的本构模型的校准。

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In this work, the post-yield behaviour of cortical bone is investigated using finite element modelling, nanoindentation and atomic force microscopy. Based on recent investigations, it is proposed that, since pressure dependent deformation mechanisms may contribute to yielding in bone, constitutive models attempting to capture its post-yield behaviour should also incorporate pressure dependence. Nanoindentation testing is performed using a spheroconical indenter tip, and subsequent atomic force microscopy at the indented site shows that bone does not exhibit surface pile-up. By simulating the nanoindentation test, it is found that a Mises based constitutive law cannot simultaneously capture the deformations and load-displacement curve produced during nanoindentation. However, an extended Drucker-Prager model can capture the post-yield behaviour of bone accurately, since it accounts for pressure dependent yield. This suggests that frictional mechanisms are central to the post-yield behaviour of bone. In this work, the extended Drucker-Prager model is calibrated and validated using further simulations.
机译:在这项工作中,使用有限元建模,纳米压痕和原子力显微镜研究了皮质骨的屈服后行为。基于最近的研究,提出,由于压力相关的变形机制可能有助于骨骼的屈服,因此试图捕获其屈服后行为的本构模型也应考虑压力的影响。纳米压痕测试是使用球形锥形压头进行的,随后在压痕部位进行的原子力显微镜检查显示骨骼没有表面堆积。通过模拟纳米压痕测试,发现基于Mises的本构定律不能同时捕获纳米压痕过程中产生的变形和载荷-位移曲线。但是,扩展的Drucker-Prager模型可以准确地捕获骨骼的屈服后行为,因为它可以解释与压力有关的屈服。这表明摩擦机制对于骨骼的屈服后行为至关重要。在这项工作中,扩展的Drucker-Prager模型将通过进一步的仿真进行校准和验证。

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