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Dataset on microstructural characteristics and mechanical performance of homogeneous and functionally graded fibrous scaffolds

机译:均质和功能梯度纤维支架的微观结构特征和力学性能的数据集

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摘要

Data in this article are supplementary to the corresponding research article [1]. Morphological features of homogeneous and graded nanofibrous electrospun gelatin scaffolds were observed using scanning electron microscopy. Microstructural properties including fiber diameter and pore size were determined via image analysis, using ImageJ. Uniaxial tensile and fracture tests were performed on both homogeneous and graded scaffolds using a universal testing machine. Stress-strain curves of all scaffolds are presented. Computing software, MATLAB, was used to design fibrous networks with thickness-dependent density and alignment gradients (DAG). Finite element analysis software, Abaqus, was used to determine the effect of the number of layers on the fracture properties of DAG multilayer scaffolds.
机译:本文中的数据是对相应研究文章的补充[1]。使用扫描电子显微镜观察均质且渐变的纳米纤维电纺明胶支架的形态学特征。使用ImageJ通过图像分析确定了包括纤维直径和孔径在内的微观结构特性。使用通用测试机对均质支架和渐变支架进行了单轴拉伸和断裂测试。显示了所有支架的应力-应变曲线。使用MATLAB计算软件来设计具有依赖于厚度的密度和排列梯度(DAG)的纤维网络。使用有限元分析软件Abaqus来确定层数对DAG多层支架断裂特性的影响。

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