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Study on compression behavior of porous magnesium used as bone tissue engineering scaffolds

机译:多孔镁作为骨组织工程支架的压缩行为研究

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In this work, porous magnesium (Mg) with a three-dimensional open-cellular structure, potentially employed as bone tissue engineering scaffolds, was fabricated by the mechanical perforation method. The influences of porosity, pore size and pore arrangement on compressive behavior and the anisotropy of new porous Mg were analyzed theoretically using orthogonal arrays and the finite element method (FEM). The results showed that the parameters of porosity, pore size and pore arrangement had different effects on the compressive properties. The compressive strength could be improved by optimizing these parameters. The anisotropy of porous Mg was also verified in this study. The theoretical results showed good agreement with the experimental ones before the strain reaches 0.038.
机译:在这项工作中,通过机械穿孔方法制造了具有三维开孔结构的多孔镁(Mg),它有可能被用作骨组织工程支架。使用正交阵列和有限元方法(FEM),从理论上分析了孔隙度,孔径和孔排列对新型多孔Mg的压缩行为和各向异性的影响。结果表明,孔隙率,孔径和孔排列参数对压缩性能的影响不同。通过优化这些参数可以提高抗压强度。这项研究还证实了多孔镁的各向异性。在应变达到0.038之前,理论结果与实验结果吻合良好。

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