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Modelling of the strength-porosity relationship in glass-ceramic foam scaffolds for bone repair

机译:骨修复用玻璃陶瓷泡沫支架中强度-孔隙率关系的建模

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摘要

Foam-]ike glass-ceramic scaffolds based on three different glass compositions (45S5 Bioglass and two other experimental formulations, CEL2 and SCNA) were produced by sponge replication and characterized from morphological, architectural and mechanical viewpoints. The relationships between porosity and compressive or tensile strength were systematically investigated and modelled, respectively, by using the theory of cellular solids mechanics or quantized fracture mechanics. Models results are in good agreement with experimental findings, which highlights the satisfactory predictive capabilities of the presented approach. The developed models could contribute to improve the rational design of porous bioceramics with custom-made properties. Knowing the scaffold recommended strength for a specific surgical need, the application of the models allows to predict the corresponding porosity, which can be tailored by varying the fabrication parameters in a controlled way so that the device fulfils the desired mechanical requirements.
机译:通过海绵复制生产了基于三种不同玻璃成分(45S5生物玻璃和两种其他实验配方,CEL2和SCNA)的泡沫样玻璃陶瓷支架,并从形态,建筑和机械角度进行了表征。孔隙率与抗压强度或抗拉强度之间的关系分别通过使用单元固体力学或定量断裂力学的理论进行了系统地研究和建模。模型结果与实验结果非常吻合,这突显了所提出方法的令人满意的预测能力。开发的模型可以有助于改进具有定制属性的多孔生物陶瓷的合理设计。知道脚手架为特定手术需求推荐的强度后,模型的应用就可以预测相应的孔隙率,可以通过以受控方式更改制造参数来定制相应的孔隙率,从而使设备满足所需的机械要求。

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