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首页> 外文期刊>Journal of Biomechanics >A theoretical model of the effect of continuum damage on a bone adaptation model.
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A theoretical model of the effect of continuum damage on a bone adaptation model.

机译:连续损伤对骨骼适应模型影响的理论模型。

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摘要

Throughout life, bone is continuously turning over by the well-regulated processes of bone formation and resorption. Everyday activities damage bone, and this damage is normally repaired in a continuous remodelling process. When an imbalance in this remodelling process occurs, bones may become more susceptible to fracture. This paper is devoted to a theoretical modelling of the competition between damage and internal remodelling in bones. The general theory of adaptive damaged-elastic materials proposed here as a model for the physiological process of damaged-bone remodelling follows the general framework of continuum thermodynamics where new damaged-bone remodelling law and associated thermodynamical restrictions are stated, and specialized to the case of small strain in isothermal processes. An attempt is also made to derive: (a) the damage force (adaptive damage energy release rate ) which controls the microcracks propagation and arrest, and (b) the damage rule by introducing damage thresholds and loading/unloading conditions.
机译:在整个生命过程中,骨骼都通过良好控制的骨骼形成和吸收过程不断翻转。日常活动会损害骨骼,通常会通过连续的重塑过程修复这种损害。当在此重塑过程中出现不平衡时,骨骼可能会更容易骨折。本文致力于骨骼损伤与内部重塑之间竞争的理论模型。这里提出的自适应损伤弹性材料的一般理论,是作为损伤骨重塑的生理过程的模型,遵循了连续热力学的一般框架,在该框架中,提出了新的损伤骨重塑定律和相关的热力学限制,并专门针对等温过程中的应变很小。还尝试得出:(a)控制微裂纹传播和阻止的破坏力(自适应破坏能量释放率),以及(b)通过引入破坏阈值和加载/卸载条件来确定破坏规则。

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