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首页> 外文期刊>Iranian polymer journal >Improvements in morphology, mechanical and thermal properties of films produced by reactive blending of poly(lactic acid)atural rubber latex with dicumyl peroxide
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Improvements in morphology, mechanical and thermal properties of films produced by reactive blending of poly(lactic acid)atural rubber latex with dicumyl peroxide

机译:聚乳酸/天然橡胶胶乳与过氧化二枯基反应共混制得的薄膜的形态,机械和热性能的改善

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摘要

The effect of dicumyl peroxide (DCP) as a free-radical cross-linking agent on the morphology, thermal and mechanical properties, and gas permeation of blown films prepared by reactive blending of poly(lactic acid) (PLA) and natural rubber latex was investigated. In comparison to the blown films without DCP, SEM micrographs revealed that the amount of debonded rubber domains from the cryofractured surface reduced considerably. This was when DCP at 0.003 phr was incorporated and the free radicals from thermally decomposed DCP reacted with PLA and NR chains, generating PLA-NR copolymers and cross-linked NR as confirmed by FTIR spectra. These PLA-NR copolymers acted as compatibilizers, which increased the strength at the PLA/NR interfaces, leading to the improvement in tensile strength, elongation at break, tensile toughness, impact strength, and tear strength. Although DCP did not influence the cold crystallization of PLA, TGA thermograms showed that thermal stability slightly increased owing to the enhanced interfacial adhesion. However, the addition of DCP at 0.005 and 0.010 phr resulted in a high content of cross-linked NR gel, by consuming the free radicals instead in copolymer formation. Therefore, the compatibilization efficiency was significantly reduced and the mechanical properties of reactive PLA/NR blown films finally dropped. Also, this poor interfacial adhesion facilitated the microvoid formation at the polymer-rubber interface as a result of mechanical stretching upon the film blowing process, increasing the permeation of water vapor and oxygen molecules. According to our study, it can be summarized that to optimize the morphology, mechanical properties, and gas permeation property of the free radical-assisted reactive blends, it is of great concern to carefully balance reactive compatibilizer formation and gel formation by adjusting the DCP content.
机译:过氧化二枯基(DCP)作为自由基交联剂对通过聚乳酸(PLA)和天然橡胶胶乳的反应共混制备的吹塑薄膜的形貌,热力学性能和气体渗透的影响为调查。与没有DCP的吹塑薄膜相比,SEM显微照片显示,从低温断裂表面剥离的橡胶区域的数量大大减少。这是当掺入0.003 phr的DCP时,热分解的DCP产生的自由基与PLA和NR链反应,生成PLA-NR共聚物和交联的NR(通过FTIR光谱证实)。这些PLA-NR共聚物起到了增容剂的作用,增加了PLA / NR界面的强度,从而改善了拉伸强度,断裂伸长率,拉伸韧性,冲击强度和撕裂强度。尽管DCP不会影响PLA的冷结晶,但TGA热分析图显示,由于界面粘合力的增强,热稳定性略有提高。但是,在0.005和0.010 phr处添加DCP会通过消耗自由基而不是形成共聚物而导致高含量的交联NR凝胶。因此,相容性效率显着降低,反应性PLA / NR吹塑薄膜的机械性能最终下降。而且,由于吹膜过程中的机械拉伸,这种不良的界面粘合性促进了聚合物-橡胶界面处的微孔形成,从而增加了水蒸气和氧气分子的渗透。根据我们的研究,可以总结出,要优化自由基辅助反应性共混物的形态,机械性能和气体渗透性能,通过调节DCP含量来仔细平衡反应性增容剂的形成和凝胶的形成是非常重要的问题。 。

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