首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Selective Laser Melting of Ti6Al4V sub-millimetric cellular structures: Prediction of dimensional deviations and mechanical performance
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Selective Laser Melting of Ti6Al4V sub-millimetric cellular structures: Prediction of dimensional deviations and mechanical performance

机译:Ti6Al4V亚毫米蜂窝结构的选择性激光熔化:预测尺寸偏差和机械性能

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摘要

Ti6Al4V sub-millimetric cellular structures arise as promising solutions concerning the progress of conventional orthopedic implants due to its ability to address a combination of mechanical, physical and topological properties. Such ability can improve the interaction between implant materials and surrounding bone leading to long-term successful orthopedic implants. Selective Laser Melting (SLM) capability to produce high quality Ti6Al4V porous implants is in great demand towards orthopedic biomaterials. In this study, Ti6Al4V cellular structures were designed, modeled, SLM produced and characterized targeting orthopedic implants. For that purpose, a set of tools is proposed to overcome SLM limited accuracy to produce porous biomaterials with desired dimensions and mechanical properties. Morphological analyses were performed to evaluate the dimensional deviations noticed between the model CAD and the SLM produced structures. Tensile tests were carried out to estimate the elastic modulus of the Ti6Al4V cellular structures. The present work proposes a design methodology showing the linear correlations found for the dimensions, the porosity and the elastic modulus when comparing the model CAD designs with Ti6Al4V structures by SLM.
机译:Ti6Al4V亚毫米细胞结构因其能够处理机械、物理和拓扑特性的组合而成为常规骨科植入物进展的有希望的解决方案。这种能力可以改善植入材料和周围骨骼之间的相互作用,从而实现长期成功的骨科植入。选择性激光熔凝(SLM)技术生产高质量Ti6Al4V多孔植入物是骨科生物材料的一大需求。在这项研究中,Ti6Al4V细胞结构被设计、建模、SLM生产和表征,用于靶向骨科植入物。为此,提出了一套工具来克服SLM有限的精度,以生产具有所需尺寸和机械性能的多孔生物材料。进行形态学分析,以评估模型CAD和SLM生产的结构之间注意到的尺寸偏差。进行拉伸试验以估计Ti6Al4V蜂窝结构的弹性模量。目前的工作提出了一种设计方法,显示了通过SLM将模型CAD设计与Ti6Al4V结构进行比较时发现的尺寸、孔隙率和弹性模量的线性相关性。

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