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首页> 外文期刊>Journal of biomechanical engineering. >Modeling modulus reduction in bovine trabecular bone damaged in compression.
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Modeling modulus reduction in bovine trabecular bone damaged in compression.

机译:压缩中损坏的小梁骨的模量降低模型。

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摘要

Loading bone beyond its yield point creates microdamage, leading to reduction in stiffness. Previously, we related microdamage accumulation to changes in mechanical properties. Here, we develop a model that predicts stiffness loss based on the presence of microdamage. Modeling is done at three levels: (1) a single trabecula, (2) a cellular solid consisting of intact, damaged, and fractured trabeculae, and (3) a specimen with a localized damage band. Predictions of a reduced modulus agree well with experimental measured modulus reductions of post-yield compression of bovine trabecular bone. The predicted reduced modulus is relatively insensitive to changes in the input parameters.
机译:将骨头加载超过其屈服点会产生微损伤,从而导致刚度降低。以前,我们将微损伤累积与机械性能的变化相关联。在这里,我们开发了一个模型,该模型可根据微损伤的存在来预测刚度损失。在三个级别上进行建模:(1)单根小梁,(2)由完整,受损和断裂的小梁组成的细胞实体,以及(3)具有局部损伤带的标本。模量降低的预测与实验测量的牛小梁骨屈服后压缩模量降低非常吻合。预测的减小的模量对输入参数的变化相对不敏感。

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