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Trabecular Scaffolds’ Mechanical Properties of Bone Reconstruction Using Biomimetic Implants

机译:仿生植入物重建骨小梁支架的力学性能

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Several studies characterized and tested properties related to bone structure like the biomimicry and strength in different printing materials. However, all attempts were unsuccessful in finding the perfect material. Current 3D printing bone technologies can create either hard inert bone structure; that are structurally compatible but functionally inert; or, fragile soft structures that have osteoconductive properties but are extremely weak in structure. The present paper test the designing process of 3D-printed ABS scaffolds using bone's trabecular pattern as an option to enhance the strength of the scaffolds in physiologic load-bearing directions. For this experience, ABS has been considered, as it is widely available in desktop 3D printers. Finally, the mechanical properties of biomimetic scaffolds for compression strength and modulus have been analyzed.
机译:多项研究表征并测试了与骨骼结构有关的特性,例如在不同印刷材料中的仿生性和强度。但是,所有尝试都未能找到理想的材料。当前的3D打印骨骼技术可以创建坚硬的惰性骨骼结构;在结构上兼容但在功能上是惰性的;或者,具有骨传导特性但结构极其脆弱的脆弱的柔软结构。本文测试了使用3D打印的ABS支架的设计过程,该设计使用骨骼的小梁图案作为选项来增强支架在生理承载方向上的强度。对于这种体验,已经考虑了ABS,因为它在台式机3D打印机中广泛可用。最后,分析了仿生支架的抗压强度和模量的机械性能。

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