首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Experimental and numerical characterisation of the elasto-plastic properties of bovine trabecular bone and a trabecular bone analogue.
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Experimental and numerical characterisation of the elasto-plastic properties of bovine trabecular bone and a trabecular bone analogue.

机译:牛小梁骨和小梁骨类似物的弹塑性特性的实验和数值表征。

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The inelastic pressure dependent compressive behaviour of bovine trabecular bone is investigated through experimental and computational analysis. Two loading configurations are implemented, uniaxial and confined compression, providing two distinct loading paths in the von Mises-pressure stress plane. Experimental results reveal distinctive yielding followed by a constant nominal stress plateau for both uniaxial and confined compression. Computational simulation of the experimental tests using the Drucker-Prager and Mohr-Coulomb plasticity models fails to capture the confined compression behaviour of trabecular bone. The high pressure developed during confined compression does not result in plastic deformation using these formulations, and a near elastic response is computed. In contrast, the crushable foam plasticity models provide accurate simulation of the confined compression tests, with distinctive yield and plateau behaviour being predicted. The elliptical yield surfaces of the crushable foam formulations in the von Mises-pressure stress plane accurately characterise the plastic behaviour of trabecular bone. Results reveal that the hydrostatic yield stress is equal to the uniaxial yield stress for trabecular bone, demonstrating the importance of accurate characterisation and simulation of the pressure dependent plasticity. It is also demonstrated in this study that a commercially available trabecular bone analogue material, cellular rigid polyurethane foam, exhibits similar pressure dependent yield behaviour, despite having a lower stiffness and strength than trabecular bone. This study provides a novel insight into the pressure dependent yield behaviour of trabecular bone, demonstrating the inadequacy of uniaxial testing alone. For the first time, crushable foam plasticity formulations are implemented for trabecular bone. The enhanced understanding of the inelastic behaviour of trabecular bone established in this study will allow for more realistic simulation of orthopaedic device implantation and failure.
机译:通过实验和计算分析研究了牛小梁骨的非弹性压力依赖性压缩行为。实现了两种加载配置,即单轴压缩和有限压缩,在von Mises-压力应力平面中提供了两种不同的加载路径。实验结果表明,对于单轴压缩和有限压缩,屈服具有明显的屈服,随后具有恒定的名义应力平稳期。使用Drucker-Prager和Mohr-Coulomb可塑性模型进行的实验测试的计算模拟无法捕获小梁骨的受限压缩行为。使用这些公式,在压缩过程中产生的高压不会导致塑性变形,并且可以计算出接近弹性的响应。相反,可压碎的泡沫可塑性模型提供了有限压缩试验的精确模拟,并预测了独特的屈服和平稳状态。 von Mises压力应力平面中的可压碎泡沫配方的椭圆形屈服面准确地表征了小梁骨的塑性行为。结果表明,静水屈服应力等于小梁骨的单轴屈服应力,表明精确表征和模拟压力依赖性可塑性的重要性。在这项研究中还证明,尽管市售的小梁骨类似材料多孔硬质聚氨酯泡沫塑料具有比小梁骨更低的刚度和强度,但仍表现出类似的压力依赖性屈服行为。这项研究为小梁骨的压力依赖性屈服行为提供了新颖的见解,证明了单轴测试的不足。首次将可压碎的泡沫塑料配方用于小梁骨。在这项研究中建立的对小梁骨的非弹性行为的加深了解将允许更真实地模拟骨科器械的植入和失败。

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