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Modeling Analysis of Silk Fibroin/Poly(ε-caprolactone) Nanofibrous Membrane under Uniaxial Tension

机译:单轴拉伸下丝素蛋白/聚(ε-己内酯)纳米纤维膜的建模分析

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摘要

Evaluating the mechanical ability of nanofibrous membranes during processing and end uses in tissue engineering is important. We propose a geometric model to predict the uniaxial behavior of randomly oriented nanofibrous membrane based on the structural characteristics and tensile properties of single nanofibers. Five types of silk fibroin (SF)/poly(ε-caprolactone) (PCL) nanofibers were prepared with different mixture ratios via an electrospinning process. Stress–strain responses of single nanofibers and nanofibrous membranes were tested. We confirmed that PCL improves the flexibility and ductility of SF/PCL composite membranes. The applicability of the analytical model was verified by comparison between modeling prediction and experimental data. Experimental stress was a little lower than the modeling results because the membranes were not ideally uniform, the nanofibers were not ideally straight, and some nanofibers in the membranes were not effectively loaded.
机译:在组织工程的加工和最终使用过程中,评估纳米纤维膜的机械性能非常重要。我们提出了一种基于单个纳米纤维的结构特征和拉伸性能来预测随机取向的纳米纤维膜的单轴行为的几何模型。通过电纺丝工艺制备了五种不同混合比的丝素蛋白(SF)/聚(ε-己内酯)(PCL)纳米纤维。测试了单根纳米纤维和纳米纤维膜的应力应变响应。我们证实PCL改善了SF / PCL复合膜的柔韧性和延展性。通过模型预测与实验数据之间的比较,验证了分析模型的适用性。实验应力比建模结果低一点,因为膜不是理想的均匀,纳米纤维不是理想的笔直,并且膜中的某些纳米纤维没有有效负载。

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