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Structure and blood compatibility of highly oriented poly(lactic acid)/thermoplastic polyurethane blends produced by solid hot stretching

机译:固体热拉伸制备的高取向聚乳酸/热塑性聚氨酯共混物的结构和血液相容性

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摘要

Highly oriented poly(lactic acid) (PLA)/thermoplastic polyurethane (TPU) blends were fabricated through solid hot stretching technology in an effort to improve the mechanical properties and blood biocompatibility of PLA as blood-contacting medical devices. It was found that the tensile strength and modulus of the blends can be improved dramatically by stretching. With the increase of draw ratio, the cold crystallization peak became smaller, and the glass transition and the melting peak moved to high temperature, while the crystallinity increased, and the grain size of PLA decreased, indicating of the stress-induced crystallization during drawing. The oriented blends exhibited structures with longitudinal striations which indicate the presence of micro-fibers. TPU phase was finely and homogeneously dispersed in the PLA, and after drawing, TPU domains were elongated to ellipsoid. The introduction of TPU and orientation could enhance the blood compatibility of PLA by prolonging kinetic clotting time, and decreasing hemolysis ratio and platelet activation.
机译:通过固体热拉伸技术制备了高取向聚乳酸(PLA)/热塑性聚氨酯(TPU)共混物,以改善作为血液接触医疗器械的PLA的机械性能和血液生物相容性。发现通过拉伸可以显着改善共混物的拉伸强度和模量。随着拉伸比的增加,冷结晶峰变小,玻璃化转变和熔融峰移至高温,而结晶度增加,PLA的晶粒尺寸减小,表明在拉伸过程中应力诱导结晶。定向的共混物表现出具有纵向条纹的结构,表明存在超细纤维。 TPU相细而均匀地分散在PLA中,拉伸后,TPU域伸长为椭圆形。 TPU的引入和定向可通过延长动力学凝血时间,降低溶血率和血小板活化来增强PLA的血液相容性。

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