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Influence of the Unit Cell Geometrical Parameter to the Mechanical Properties of Ti6Al4V Open-Porous Scaffolds Manufactured By Selective Laser Melting

机译:单位细胞几何参数对选择性激光熔化制造的Ti6Al4V开放式支架机械性能的影响

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Selective laser melting (SLM) is getting more and more established as reliable methods for producing open-porous scaffolds with accurately controlled pore size, strut size, and porosity. However, the optimal geometrical parameter of the unit cell by SLM remained unclear. In this study, we evaluated the effect of unit geometrical parameters to the mechanical properties of porous scaffolds by finite element analysis method and Mechanical testing method. Six rhombic dodecahedron unit cells were designed with different geometrical parameter and the scaffolds manufactured by SLM using Ti6Al4V. The rhombic dodecahedron unit cell relative density formula can be obtained and the quadratic function relationship between relative modulus and relative density was fitted. The compression testing result shows that the specimens with the same pore size, the elastic modulus and the strength are increased with increasing strut size and the specimens with the same strut size, the elastic modulus and the strength are decreased with increasing strut size. The porosity can be calculated by pore size and strut size. The compression strength of the porous scaffolds is 114MPa-258MPa and the quasi-elastic gradient is 3.18Gpa~8.64Gpa, which is similar to human bone. The simulation values are different from the experiment values but the variation tendency is in accordance.
机译:选择性激光熔化(SLM)被越来越确立为用于制造开放式多孔支架与精确控制的孔尺寸,支柱大小,孔隙率和可靠的方法。然而,通过SLM单元电池的最佳几何参数仍不清楚。在这项研究中,我们评估的单元几何参数,以通过有限元分析法和机械测试方法多孔支架的机械性能的影响。被设计成不同的几何参数,并通过使用的Ti6Al4V SLM制造的支架六菱形十二面体的单元电池。十二面体晶胞相对密度公式菱形能够获得和相对弹性模量和相对密度之间的二次函数关系装配。压缩测试结果表明:具有相同的孔尺寸,弹性模量和强度的试样随着支柱大小,并用相同的支柱尺寸试样增大时,弹性模量和强度都随着支柱尺寸减小。孔隙率可通过孔径和支柱尺寸来计算。的多孔支架的压缩强度是114MPa-258MPa和准弹性梯度是3.18Gpa〜8.64Gpa,其类似于人骨。模拟值与实验值的不同而变化趋势是根据。

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