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Characterization of Biodegradable PLLA/PCL and PLLA/PBSL Polymeric Blends

机译:生物降解PLA / PCL和PLLA / PBSL聚合物共混物的表征

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Recently, much attention has been paid to poly(L-lactic acid) (PLLA), a biodegradable polymer made from starch of potato and cone, as a substitute for petrochemical polymers. PLLA has strengtii and modulus comparable to commercially available engineering polymers; however, PLLA exhibits brittle fracture behavior especially under impact loading conditions and therefore, toughening of PLLA becomes one of the most important issues in the field of bio-polymer engineering. Just recently, polymer blends of PLLA and ductile biodegradable polymers have been developed in order to improve the ductility of PLLA. In the present study, two different kinds of biodegradable polymer blends were prepared from PLLA, poly(ε-caprolactone) (PCL) and poly(butylene succinate-co-L-lactate) (PBSL). The binary blends of PLLA with PCL and PLLA with PBSL were prepared in different proportions. The tensile properties, melting flow index (MFI), and dynamic mechanical analysis (DMA) of these binary blends and virgin polymers were then evaluated. It was found that the addition of PCL and PBSL to PLLA reduced the tensile strength and modulus, whereas the elongation at break and MFI values increased. Morphological analysis of PLLA and PLLA blends on the fractured surface under liquid nitrogen was carried out by scanning elecfron microscopy (SEM) on both binary blends. The SEM analyses also revealed that all the PLLA/PCL and PLLA/PBSL blends are immiscible blends where the PCL and PBSL phase are finely dispersed in the PLLA-rich phase.
机译:最近,已经注意到了聚(L-乳酸)(PLLA),一种可生物降解的聚合物,由马铃薯和锥体制成的可生物降解的聚合物,作为石化聚合物的替代品。 PLLA具有与市售工程聚合物相当的StrengTii和模量;然而,PLLA表现出脆性断裂行为,特别是在冲击载荷条件下,因此PLLA的增韧成为生物聚合物工程领域中最重要的问题之一。刚才,已经开发了PLLA和延展性可生物降解聚合物的聚合物共混物以改善PLLA的延展性。在本研究中,由PLLA,聚(ε-己内酯)(PCL)和聚(丁二烯酸酯-CO-L-乳酸)(PBSL)制备两种不同种类的可生物降解的聚合物共混物。用PCL和PLLA与PBS1的PLLA二元共混物以不同的比例制备。然后评价这些二元共混物和原始聚合物的拉伸性能,熔化流量指数(MFI)和动态机械分析(DMA)。发现PCL和PBSL的添加到PLLA降低了拉伸强度和模量,而断裂处的伸长率和MFI值增加。通过扫描两种二元共混物的电子氮气下液氮下裂缝表面上PLLA和PLLA共混物的形态学分析。 SEM分析还显示出所有PLLA / PCL和PLLA / PBSL共混物是不混溶的共混物,其中PCL和PBS1相在富含PLLA的相中粒子。

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