首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Facile preparation of biocompatible poly (lactic acid)-reinforced poly(epsilon-caprolactone) fibers via graphite nanoplatelets -aided melt spinning
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Facile preparation of biocompatible poly (lactic acid)-reinforced poly(epsilon-caprolactone) fibers via graphite nanoplatelets -aided melt spinning

机译:生物相容性聚(乳酸)的体积制备 - 通过石墨纳米薄膜 - 裂解纺丝纺丝熔融纺丝纤维

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摘要

Addition of high-aspect-ratio (AR) nanofillers can markedly influence flow behavior of polymer systems. As a result, application of graphite nanoplatelets (GNP) allows preparation of microfibrillar composites (MFC) based on PCL matrix reinforced with in-situ generated PLA fibrils. This work deals, for the first time, with preparation of analogous melt-drawn fibers. Unlike other blend-based fibers, the spinning and melt drawing leads to structure of deformed inclusions due to unfavorable ratio of rheological parameters of components. Subsequent moderate cold drawing of the system with dissimilar deformability of components causes strengthening with PLA fibrils. Unexpectedly, high velocity and extent of cold drawing leads to structure with low-AR inclusions, similar to the original melt-drawn blend. Extensive fast deformation of the soft PCL matrix does not allow sufficient stress transfer to rigid PLA. In spite of peculiarities found, the GNP-aided melt spinning allows facile preparation of biodegradable biocompatible fibers with wide range of diameters (80-400 mu m) and parameters (2.35-18 cN/tex).
机译:添加高纵横比(Ar)纳米填料可以显着影响聚合物系统的流动性能。结果,石墨纳米片(GNP)的施加允许基于用原位产生的PLA原纤维增强的PCL基质制备微原纤维复合材料(MFC)。这项工作首次涉及类似熔喷纤维的制备。与其他基于混合物的纤维不同,由于组分的流变参数的不利比率,纺丝和熔体拉伸导致变形夹杂物的结构。随后的系统中温和的耐冷绘,具有多样性的组分可变形性导致加强PLA原纤维。出乎意料地,冷绘制的高速度和程度导致具有低AR夹杂物的结构,类似于原始熔化的混合物。软PCL基质的广泛快速变形不允许对刚性PLA充分应力转移。尽管发现了特殊性,但GNP辅助熔融纺丝允许配备可生物降解的生物相容性纤维的宽度范围(80-400 mu m)和参数(2.35-18 cn / tex)。

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