首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Insights into unit cell size effect on mechanical responses and energy absorption capability of titanium graded porous structures manufactured by laser powder bed fusion
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Insights into unit cell size effect on mechanical responses and energy absorption capability of titanium graded porous structures manufactured by laser powder bed fusion

机译:对通过激光粉床融合制造的钛分级多孔结构的机械响应和能量吸收能力的单元电池尺寸效应

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摘要

Schwartz diamond graded porous structures (SDGPSs), constructed by a triply-periodic-minimal-surface diamond unit cell topology, were developed with various unit cell sizes and printed by laser powder bed fusion (LPBF) from a commercially pure titanium powder for bone implant applications. The effect of unit cell size on the printability, strut dimensions, stress and strain distributions, mechanical properties and energy absorption capability of SDGPSs was investigated. The results indicate the good printability of SDGPSs via LPBF with multiple unit cell sizes from 3.5 mm to 5.5 mm through the three-dimensional reconstruction from microcomputed tomography. The unit cell size plays a critical role in both strut diameters and specific surface areas of SDGPSs. An increase in the unit cell size leads to a reduction in the experimental Young's modulus from 673.08 MPa to 518.71 MPa and compressive yield strength from 11.43 MPa to 7.73 MPa. The mechanical properties of LPBF-printed SDGPSs are higher than those predicted by the finite element method, which is attributed to the higher volume fractions of the printed SDGPSs than the designed values. Furthermore, a rise in unit cell size leads to the decrease of energy absorption capability from 6.06 MJ/mm(3) to 4.32 MJ/mm(3) and exhibits little influence on the absorption efficiency. These findings provide a good understanding and guidance to the optimization on the unit cell size of functionally graded porous structures for desirable properties.
机译:Schwartz金刚石梯度多孔结构(SDGPSs)由三周期最小表面金刚石单胞拓扑结构构建,具有不同的单胞尺寸,并由用于骨植入应用的商业纯钛粉末通过激光粉末床融合(LPBF)打印。研究了单胞尺寸对SDGPS印刷适性、支杆尺寸、应力应变分布、力学性能和能量吸收能力的影响。结果表明,通过微计算机断层扫描的三维重建,SDGPS通过LPBF具有良好的印刷适性,多个单元尺寸从3.5 mm到5.5 mm。单胞大小对SDGPS的支柱直径和比表面积起着关键作用。晶胞尺寸的增加导致实验杨氏模量从673.08 MPa降至518.71 MPa,压缩屈服强度从11.43 MPa降至7.73 MPa。LPBF印刷SDGPS的机械性能高于有限元法预测的机械性能,这是因为印刷SDGPS的体积分数高于设计值。此外,单位电池尺寸的增加导致能量吸收能力从6.06 MJ/mm(3)降低到4.32 MJ/mm(3),并且对吸收效率几乎没有影响。这些发现为优化功能梯度多孔结构的晶胞尺寸以获得理想的性能提供了很好的理解和指导。

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