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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Selective Laser Melting: a regular unit cell approach for the manufacture of porous, titanium, bone in-growth constructs, suitable for orthopedic applications.
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Selective Laser Melting: a regular unit cell approach for the manufacture of porous, titanium, bone in-growth constructs, suitable for orthopedic applications.

机译:选择性激光熔化:用于制造多孔,钛,骨内生长构建体的常规单元细胞方法,适用于整形外科应用。

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摘要

In this study, a novel porous titanium structure for the purpose of bone in-growth has been designed, manufactured and evaluated. The structure was produced by Selective Laser Melting (SLM); a rapid manufacturing process capable of producing highly intricate, functionally graded parts. The technique described utilizes an approach based on a defined regular unit cell to design and produce structures with a large range of both physical and mechanical properties. These properties can be tailored to suit specific requirements; in particular, functionally graded structures with bone in-growth surfaces exhibiting properties comparable to those of human bone have been manufactured. The structures were manufactured and characterized by unit cell size, strand diameter, porosity, and compression strength. They exhibited a porosity (10-95%) dependant compression strength (0.5-350 Mpa) comparable to the typical naturally occurring range. It is also demonstrated that optimized structures have been produced that possesses ideal qualities for bone in-growth applications and that these structures can be applied in the production of orthopedic devices.
机译:在这项研究中,设计,制造和评估了一种用于骨内生长目的的新型多孔钛结构。该结构是通过选择性激光熔化(SLM)产生的;一种快速制造工艺,能够产生高度复杂,功能分级的部件。所描述的技术利用基于确定的常规单元单元的方法来设计和产生具有大范围的物理和机械性能的结构。这些物业可根据具体要求定制;特别是,已经制造了具有骨内生长表面的功能渐进的结构,其表现出与人骨的性质相当。通过单位细胞尺寸,链直径,孔隙率和压缩强度制造结构和特征。它们表现出孔隙率(10-95%)依赖性压缩强度(0.5-350MPa),与典型的天然存在的范围相当。还证明,已经生产优化的结构,其具有具有理想的骨内生长应用的理想品质,并且这些结构可以应用于整形外科器件的生产中。

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