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3D printing as an efficient way for comparative study of biomimetic structures - trabecular bone and honeycomb

机译:3D打印是仿生结构比较研究的有效方法-小梁骨和蜂窝

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摘要

The mechanical properties of engineered trabecular bone and honeycomb structures are investigated by the combined use of the 3D printing technology and the compression test. The engineered trabecular bone structure is designed randomly to mimic the dynamic growth of bone structure for withstanding different types of daily loadings. The designed structures are fabricated using the fused deposition modeling (FDM) with acrylonitrile butadiene styrene (ABS). A representation of bone marrow, milk containing 0.5% fat which has a density similar to that of the marrow in the long bone, is also added into the engineered trabecular bone structure to fill the porous spaces within the structure for two cases - confined and unconfined environments. This is intended to probe the mechanical contribution of bone marrow to the strength characteristics of the engineered trabecular bone. The results show that the trabecular bone structure could serve as an ideal structure if its application requires high elasticity whereas the honeycomb structure would be ideal for an application that requires higher strength and toughness. Also it is shown that the bone marrow contributes positively to transferring some of the loading on the trabecular bone to other parts of the body. Besides, the comparison of the results with those by the previous studies show that the 3D printing technology could be utilized as an efficient way for comparative study of biomimetic structures.
机译:通过结合使用3D打印技术和压缩测试,对工程化的小梁骨和蜂窝结构的机械性能进行了研究。工程小梁的骨骼结构是随机设计的,可以模拟骨骼结构的动态增长,以承受不同类型的日常负荷。设计的结构是使用熔融沉积建模(FDM)和丙烯腈丁二烯苯乙烯(ABS)制成的。骨髓的一种代表形式是,牛奶中含有0.5%的脂肪,其密度与长骨中的骨髓密度相似,也被添加到工程化的小梁骨结构中,以填充结构内的多孔空间(两种情况):密闭和无密环境。这旨在探查骨髓对工程小梁的强度特性的机械作用。结果表明,如果其应用需要高弹性,则小梁骨结构可以用作理想的结构,而蜂窝结构对于需要更高强度和韧性的应用将是理想的。还显示出骨髓对将小梁骨上的一些负荷转移到身体的其他部分起了积极作用。此外,将结果与先前研究的结果进行比较表明,3D打印技术可以用作仿生结构比较研究的有效方法。

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