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Evaluating compressive properties and morphology of expandable polyurethane foam for use in a synthetic paediatric spine

机译:在合成小儿脊柱中使用可扩张的聚氨酯泡沫的压缩性能和形态学

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An expandable rigid PU foam can turns into complex shapes, with a shell like structure on the outside and honeycomb structure on the inside, which can be easily shaped to a vertebra form. The present study aims to determine whether expandable rigid polyurethane foam was an appropriate substitute for rigid block polyurethane foam to model the trabecular bone. Static compression tests were performed to determine compressive moduli and yield stresses on three polyurethane foam densities namely 0.16?g/cm3, 0.24?g/cm3and 0.42?g/cm3. Morphology of the PU foams for all densities was also observed. The compressive modulus for 0.16?g/cm3and 0.24?g/cm3were found varied from 40 to 43?MPa and 83 to 92?MPa while yield stress ranged from 2.1 to 2.3?MPa and 3.4 to 4.8?MPa respectively. As for 0.42?g/cm3, the compressive modulus and yield stress varied from 240 to 256?MPa and 38 to 40?MPa. Based on these results, the compressive modulus and yield stress of 0.24?g/cm3compared favourably with rigid block PU foam and human cadavers presented in the literatures. Hence, the findings of this study could potentially be used in developing a synthetic vertebral trabecular bone of paediatric spine for biomechanical testing.
机译:可扩展的刚性PU泡沫泡沫可以变成复杂的形状,外面的壳体如下结构,内部蜂窝结构,可以容易地成形为椎骨形式。本研究旨在确定可膨胀刚性聚氨酯泡沫是否是刚性嵌段聚氨酯泡沫的适当替代,以模拟小梁骨。进行静态压缩试验以确定压缩模量,并在三种聚氨酯泡沫密度上产生应力,即0.16〜G / cm 3,0.24·G / cm 3和0.42·g / cm 3。还观察到所有密度的PU泡沫的形态。发现的压缩模量为0.16?g / cm 3和0.24·g / cm3,发现从40〜43?mpa和83至92℃变化,同时屈服应力分别为2.1至2.3?mpa和3.4至4.8 mpa。对于0.42Ω·g / cm3,压缩模量和屈服应力在240至256℃和38至40℃变化。基于这些结果,屈服模量和屈服应力为0.24Ω·G / cm 3,良好地与文献中呈现的刚性块PU泡沫和人尸体。因此,该研究的发现可能用于开发用于生物力学检测的儿科脊柱的合成椎骨小梁骨。

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