材料科学
多孔性
脚手架
复合材料
挤压
蛋白质丝
抗压强度
沉积(地质)
组织工程
熔融沉积模型
蜂巢
3D打印
生物医学工程
医学
古生物学
沉积物
生物
作者
Iwan Zein,Dietmar W. Hutmacher,Kim Cheng Tan,Swee Hin Teoh
出处
期刊:Biomaterials
[Elsevier]
日期:2002-02-01
卷期号:23 (4): 1169-1185
被引量:1736
标识
DOI:10.1016/s0142-9612(01)00232-0
摘要
Fused deposition modeling, a rapid prototyping technology, was used to produce novel scaffolds with honeycomb-like pattern, fully interconnected channel network, and controllable porosity and channel size. A bioresorbable polymer poly(ε-caprolactone) (PCL) was developed as a filament modeling material to produce porous scaffolds, made of layers of directionally aligned microfilaments, using this computer-controlled extrusion and deposition process. The PCL scaffolds were produced with a range of channel size 160–700 μm, filament diameter 260–370 μm and porosity 48–77%, and regular geometrical honeycomb pores, depending on the processing parameters. The scaffolds of different porosity also exhibited a pattern of compressive stress–strain behavior characteristic of porous solids under such loading. The compressive stiffness ranged from 4 to 77 MPa, yield strength from 0.4 to 3.6 MPa and yield strain from 4% to 28%. Analysis of the measured data shows a high correlation between the scaffold porosity and the compressive properties based on a power–law relationship.
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