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Thermomechanical Properties of Poly(lactic acid) Films Reinforced with Hydroxyapatite and Regenerated Cellulose Microfibers

机译:羟基磷灰石和再生纤维素超细纤维增强聚乳酸薄膜的热力学性能

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摘要

Novel composite films constituted of poly(lactic acid) (PLA), hydroxyapatite (HAp), and two types of regenerated cellulose fillers-particulate and fibrous type-were produced by melt extrusion in a twin-screw micro-compounder. The effect of the film composition on the tensile and dynamic mechanical behavior and the HAp dispersion in the PLA matrix were investigated thoroughly. Appearance of crazed regions and prevention of HAp aggregation in the PLA matrix were elucidated in the composites with up to 15 wt % particulate cellulose content, which was the main reason for only slight reduction in the tensile properties, and consequently trivial degradation of their pre-failure energy absorption as compared to neat PLA films. Superior dynamical energy storage capacities were obtained for the particulate cellulose modified composites, while their fibrous counterparts had not as good properties. Additionally, the anisotropic mechanical behavior obtained for the extruded composites should be favorable for use as biomaterials aimed at bone tissue engineering applications.
机译:在双螺杆微粉碎机中通过熔融挤出制备了由聚乳酸(PLA),羟基磷灰石(HAp)和两种再生纤维素填料(颗粒状和纤维状)构成的新型复合膜。彻底研究了薄膜成分对拉伸和动态力学行为以及HAp在PLA基质中的分散的影响。阐明了颗粒状纤维素含量最高为15 wt%的复合材料中出现裂纹区域并防止了PLA基质中HAp聚集的情况,这是拉伸性能仅略微降低,因此其预成型品微不足道降解的主要原因。与纯PLA薄膜相比,失效能量吸收更大。颗粒状纤维素改性复合材料具有出色的动态储能能力,而纤维状复合材料则没有那么好的性能。此外,挤出复合材料获得的各向异性力学性能应有利于用作骨组织工程应用的生物材料。

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