首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Effect of electrospun ethylene vinyl alcohol copolymer (EVOH) fibres on the structure, morphology, and properties of poly(lactic acid) (PLA)
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Effect of electrospun ethylene vinyl alcohol copolymer (EVOH) fibres on the structure, morphology, and properties of poly(lactic acid) (PLA)

机译:电纺乙烯乙烯醇共聚物(EVOH)纤维对聚乳酸(PLA)的结构,形态和性能的影响

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摘要

The effect of ethylene content and of the concentration of the solution used for electrospinning on the morphology of electrospun poly ethylene vinyl alcohol (EVOH) fibre was studied. Also, poly(lactic acid) (PLA) filled with electrospun EVOH fibres was investigated. Good interfacial adhesion between PLA and EVOH fibres was obtained with smaller diameter fibres. The effect of electrospun fibres resulted in disrupted lamellar morphology and also decreased the degree of crystallinity related to the semicrystalline framework. Surface roughness was calculated using atomic force microscopy (AFM). Surface roughness increased with the increase in fibre diameters. The rheology experiments revealed that electrospun EVOH fibres enhance the storage modulus of PLA composites while having low crystallinity. EVOH fibres showed the capacity of tuning the degradation behaviour. The good interfacial morphology between PLA and smaller diameter fibres slowed down the degradation rate, whereas composites with larger diameter fibres, due to poor interfacial adhesion showed faster degradation rate than the other compositions, because large EVOH fibres afford channels by which NaOH solution can easily penetrate throughout the composite material. The incorporation of EVOH fibres into PLA matrix allowed obtaining materials with increased storage modulus and also showed viability to tune the degradation behaviour of PLA based products.
机译:研究了乙烯含量和电纺溶液浓度对电纺聚乙烯乙烯醇(EVOH)纤维形态的影响。此外,还研究了填充有静电纺丝EVOH纤维的聚乳酸(PLA)。使用较小直径的纤维可获得PLA和EVOH纤维之间的良好界面粘合力。电纺纤维的作用导致层状形态的破坏,并且还降低了与半结晶骨架有关的结晶度。使用原子力显微镜(AFM)计算表面粗糙度。表面粗糙度随着纤维直径的增加而增加。流变学实验表明,静电纺丝EVOH纤维可提高PLA复合材料的储能模量,同时具有低结晶度。 EVOH纤维具有调节降解性能的能力。 PLA和较小直径的纤维之间的良好界面形态减慢了降解速度,而由于较差的界面粘合性,具有较大直径纤维的复合材料显示出比其他组合物更快的降解速度,因为较大的EVOH纤维提供了NaOH溶液可以轻易渗透的通道整个复合材料。将EVOH纤维掺入PLA基质中可以得到具有增加的储能模量的材料,并且还显示出可调节PLA基产品降解行为的可行性。

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