首页> 外文期刊>Journal of Mechanical Science and Technology >Design, analysis and fabrication of polyamide/hydroxyapatite porous structured scaffold using selective laser sintering method for bio-medical applications
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Design, analysis and fabrication of polyamide/hydroxyapatite porous structured scaffold using selective laser sintering method for bio-medical applications

机译:生物医学应用选择性激光烧结法设计聚酰胺/羟基磷灰石多孔结构支架

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摘要

Both medical and engineering sciences play a vital role in human health diagnose and treatment. In this scientific world, the technology of alternative bone scaffold is one of the remedial sources for bone loss treatment. This research paper focuses on the design and analysis of porous scaffold made of additive manufacturing process. Various types of biocompatible materials with different characteristics are used for this bone scaffold. In order to have high load bearing capacity, a material composition of biocompatible Polyamide (PA) combined with Hydroxyapatite (HA) is used in this research work. HA has the character of greater cell seeding growth of tissue cells and hence added in the composition. The porous scaffold models with different configuration of cubical pore, spherical pore, shifted cubical pore, shifted spherical pore are designed using Solidworks software with a pore size of 800 microns and the porosity ranging from 40 % to 70 %. All the CAD models are analyzed using ANSYS software. Based on the static structural analysis, the shifted cubical scaffold posses lesser stress concentration, and thus selected for fabrication using Selective Laser Sintering machine. The specimens are fabricated in three different build orientations and the load bearing strength is found out using experimentation. The different material composition of 100 %PA, 95 %PA: 5 %HA, 90 %PA: 10 %HA and 85 %PA: 15 %HA are considered for this study.
机译:医学和工程科学在人类健康的诊断和治疗中都起着至关重要的作用。在这个科学世界中,替代性骨支架技术是骨丢失治疗的补救来源之一。本文的研究重点在于增材制造过程中多孔支架的设计与分析。具有不同特性的各种类型的生物相容性材料被用于该骨支架。为了具有较高的承载能力,本研究工作使用了生物相容性聚酰胺(PA)与羟基磷灰石(HA)结合的材料成分。 HA具有组织细胞更大的细胞播种生长的特征,因此被添加到组合物中。使用Solidworks软件设计了具有不同配置的立方孔,球形孔,平移的立方孔,平移的球形孔的多孔支架模型,其孔径为800微米,孔隙率为40%至70%。使用ANSYS软件分析所有CAD模型。基于静态结构分析,移动的立方支架具有较小的应力集中,因此选择使用选择性激光烧结机进行制造。在三个不同的构建方向上制造了这些样本,并通过实验找出了承载强度。本研究考虑了100%PA,95%PA:5%HA,90%PA:10%HA和85%PA:15%HA的不同材料组成。

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