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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Mechanical properties of additive-manufactured porous titanium bio-structures with oriented macro-scale channels
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Mechanical properties of additive-manufactured porous titanium bio-structures with oriented macro-scale channels

机译:具有定向宏观尺度通道的增材制造的多孔钛生物结构的力学性能

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摘要

This article addresses the influence of macro-scale channels with a diameter of 1 mm on the physical and mechanical properties of additive-manufactured porous titanium (Ti) structures, which can be used as bone implants. Different orientations and numbers of channels within the additive-manufactured structures were used in this study. The produced samples were characterized through porosity, shrinkage measurements, as well as mechanical compression tests. The results demonstrate that the channel orientation in the structure influences the shrinkage rate in the parts made with horizontally or vertically orientated channels, in which a relatively isotropic shrinkage is achieved after sintering. In addition, mechanical ultimate strength of the structure can be tailored to the desired properties (such as the surrounding bone) via the channel orientation in the structure, where the overall porosity is affected by the number of channels existing in the structure.
机译:本文讨论了直径为1 mm的宏观通道对添加物制造的多孔钛(Ti)结构的物理和机械性能的影响,该结构可用作骨植入物。在这项研究中使用了增材制造结构内不同的方向和通道数量。通过孔隙率,收缩率测量以及机械压缩测试对生产的样品进行表征。结果表明,结构中的通道取向会影响水平或垂直方向通道制成的零件的收缩率,其中在烧结后可获得相对各向同性的收缩。此外,结构的机械极限强度可以通过结构中的通道方向调整为所需的特性(例如周围的骨骼),其中总体孔隙率受结构中存在的通道数影响。

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