Design and Finite Element Analysis of Triply Periodic Minimal Surfaces (Gyroid) Scaffolds
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Design of Bone Tissue Engineering scaffolds (PS350 : Pore Size 350 µm and Strut Size 200 µm) using Triply Periodic Minimal Surfaces (TPMS) and the signed distance field (SDF) & its related Finite Element (FE) simulation under compressive loading in nTopology software. The related scientific article is given below: <strong>N. Musthafa, Haja-Sherief </strong>et al. 2023. "<strong>In-Silico Prediction of Mechanical Behaviour of Uniform Gyroid Scaffolds Affected by Its Design Parameters for Bone Tissue Engineering Applications</strong>" Computation 11, no. 9: 181. https://doi.org/10.3390/computation11090181
本数据集面向骨组织工程支架开发设计:采用三重周期极小曲面(Triply Periodic Minimal Surfaces, TPMS)与有符号距离场(signed distance field, SDF)制备PS350型号支架,其参数为孔径350 µm、杆径200 µm;并基于nTopology软件,开展该支架在压缩载荷下的相关有限元(Finite Element, FE)仿真分析。相关学术文献如下:N. 穆斯塔法、哈贾-谢里夫(N. Musthafa, Haja-Sherief)等人,2023年,《面向骨组织工程应用的均匀Gyroid支架力学性能受设计参数影响的虚拟预测》(In-Silico Prediction of Mechanical Behaviour of Uniform Gyroid Scaffolds Affected by Its Design Parameters for Bone Tissue Engineering Applications),发表于《Computation》期刊第11卷第9期,文章编号181,DOI:10.3390/computation11090181。



