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Hierarchical tailoring of strut architecture to control permeability of additive manufactured titanium implants

机译:支撑结构的分层剪裁,以控制增材制造的钛植入物的渗透性

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摘要

Porous titanium implants are a common choice for bone augmentation. Implants for spinal fusion and repair of non-union fractures must encourage blood flow after implantation so that there is sufficient cell migration, nutrient and growth factor transport to stimulate bone ingrowth. Additive manufacturing techniques allow a large number of pore network designs. This study investigates how the design factors offered by selective laser melting technique can be used to alter the implant architecture on multiple length scales to control and even tailor the flow. Permeability is a convenient parameter that characterises flow, correlating to structure openness (interconnectivity and pore window size), tortuosity and hence flow shear rates. Using experimentally validated computational simulations, we demonstrate how additive manufacturing can be used to tailor implant properties by controlling surface roughness at a microstructual level (microns), and by altering the strut ordering and density at a mesoscopic level (millimetre).
机译:多孔钛植入物是骨增长的常见选择。用于脊柱融合和修复不愈合骨折的植入物必须在植入后促进血液流动,以便有足够的细胞迁移,营养物质和生长因子转运来刺激骨骼向内生长。增材制造技术允许大量的孔网络设计。这项研究调查了如何利用选择性激光熔化技术提供的设计因素,以多种长度尺度改变植入物的结构,以控制甚至调整流量。渗透率是表征流动特性的便捷参数,与结构的开放性(互连性和孔隙窗口大小),曲折度以及因此的流动剪切速率相关。使用经过实验验证的计算模拟,我们演示了如何通过在微观结构水平(微米)上控制表面粗糙度,以及在介观水平(毫米)上更改支撑顺序和密度来使用增材制造来定制植入物特性。

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  • 来源
    《Materials science & engineering》 |2013年第7期|4055-4062|共8页
  • 作者单位

    Department of Materials. Imperial College London, South Kensington Campus, London, SW7 2AZ, UK;

    School of Engineering, University of Liverpool, Brownlow Hill, Liverpool, L69 3GH, UK;

    Manchester X-ray Imaging Facility, School of Materials, The University of Manchester, Oxford Road, M13 9PL, UK;

    Manchester X-ray Imaging Facility, School of Materials, The University of Manchester, Oxford Road, M13 9PL, UK;

    Department of Materials. Imperial College London, South Kensington Campus, London, SW7 2AZ, UK;

    School of Engineering, University of Liverpool, Brownlow Hill, Liverpool, L69 3GH, UK;

    Department of Advanced Technology, Stryker Orthopaedics, Raheen Business Park, Limerick, Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Titanium porous structures; Bone ingrowth; Permeability; Additive manufacturing; Selective laser melting;

    机译:钛多孔结构;骨骼向内生长;渗透性添加剂制造;选择性激光熔化;

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