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Calibration of crushable foam plasticity models for synthetic bone material for use in finite element analysis of acetabular cup deformation and primary stability

机译:用于髋臼杯变形和主稳定性的有限元分析的合成骨材料的可破碎泡沫可塑性模型的校准

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Polyurethane (PU) foam is a material often used in biomechanical experiments and demands for the definition of crushable foam plasticity (CFP) in numerical simulations of the primary stability and deformation of implants, to describe the crushing behaviour appropriately. Material data of PU foams with five different densities (10-40 pounds per cubic foot were ascertained experimentally in uniaxial compression test and used to calibrate CFP models for finite element modelling. Additionally, experimental and numerical deformation, push-out and lever-out tests of press-fit acetabular cups were carried out to assess the influence of the chosen material definition (linear elastic and CFP) on the numerical results. Comparison of the experimentally and numerically determined force-displacement curves of the uniaxial compression test showed a mean deviation of less than 3%. In primary stability testing, the deviation between the experimental and numerical results was in a range of 0%-27% for CFP modelling and 64%-341% for the linear elastic model. The material definition selected, highly influenced the numerical results in the current study. The use of a CFP model is recommended for further numerical simulations, when a deformation of the foam beyond the yield strength is likely to occur.
机译:聚氨酯(PU)泡沫是生物力学实验中经常使用的材料,要求在对植入物的主要稳定性和变形进行数值模拟时定义可压碎的泡沫可塑性(CFP),以恰当地描述压碎行为。在单轴压缩试验中通过实验确定了五种不同密度(每立方英尺10-40磅)的PU泡沫的材料数据,并用于校准CFP模型以进行有限元建模,此外还进行了实验和数值变形,推出和杠杆测试对髋臼杯进行压入配合以评估所选材料定义(线性弹性和CFP)对数值结果的影响,通过实验和数字确定的单轴压缩试验力-位移曲线的比较显示,平均偏差为小于3%。在一次稳定性测试中,对于CFP建模,实验结果与数值结果之间的偏差在0%-27%的范围内;对于线性弹性模型,其偏差在64%-341%的范围内。当泡沫的变形超出屈服时,建议使用CFP模型进行进一步的数值模拟力量可能会发生。

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