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首页> 外文期刊>Journal of Applied Polymer Science >Poly(para-dioxanone) and poly(l-lactic acid) blends: Thermal, mechanical, and morphological properties
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Poly(para-dioxanone) and poly(l-lactic acid) blends: Thermal, mechanical, and morphological properties

机译:聚(对二恶烷酮)和聚(1-乳酸)混合物:热,机械和形态学性质

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Blends of two semicrystalline polymers, poly(L-lactic acid) (PLLA) and poly-p-dioxanone (PPD) have been prepared by solvent casting in different compositions. Thermal, morphological, and mechanical properties of the blends were studied using modulated differential scanning calorimetry, wide-angle X-ray diffractometry, scanning electron microscopy (SEM), polarizing light microscopy (PLM), and tensile tests. Thermal analysis showed two glass transition temperatures nearly constant and equal to the values of the homopolymers and constant values of melting temperature (T-m) for all blend compositions, suggesting that both polymers are immiscible. The PLM and SEM observations validated these results, and showed the different morphology obtained by changing the composition of the blend. The blends 40/60, 50/50, and 60/40 presented a clearly macroseparated system, while the 20/80 and 80/20 blends presented better homogeneity, probably due to the low amount of one component in the other. It was found by PLM that PPD is able to crystallize according to a spherulitic morphology when its content is above 40%. Under this content, the crystallization of PPD is hardly observed. The blend 20/80 is more flexible, and tough material and neck formation during elongation is also observed, due to PPD, which may act as a plasticizer. (C) 2003 Wiley Periodicals, Inc. [References: 51]
机译:两种半结晶聚合物的共混物,聚(L-乳酸)(PLLA)和聚对二氧杂环己酮(PPD)已通过溶剂浇铸成不同的组成。使用调制差示扫描量热法,广角X射线衍射法,扫描电子显微镜(SEM),偏光显微镜(PLM)和拉伸试验研究了共混物的热,形态和机械性能。热分析表明,对于所有共混物组合物,两种玻璃化转变温度几乎恒定且等于均聚物的值,并且熔融温度(T-m)的常数值恒定,表明这两种聚合物是不溶混的。 PLM和SEM观察验证了这些结果,并显示了通过改变共混物的组成获得的不同形态。共混物40 / 60、50 / 50和60/40具有明显的宏观分离体系,而20/80和80/20共混物则具有更好的均质性,这可能是由于一种组分中另一种组分的含量较低。通过PLM发现,当其含量高于40%时,PPD能够根据球状形态结晶。在该含量下,几乎没有观察到PPD的结晶。共混物20/80更具柔韧性,而且由于PPD可能会充当增塑剂,因此在延伸过程中也观察到坚硬的材料和颈部形成。 (C)2003 Wiley Periodicals,Inc. [参考:51]

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