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首页> 外文期刊>Radiation Physics and Chemistry >Compatibilization of immiscible poly(lactic acid)/poly(s-caprolactone) blend through electron-beam irradiation with the addition of a compatibilizing agent
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Compatibilization of immiscible poly(lactic acid)/poly(s-caprolactone) blend through electron-beam irradiation with the addition of a compatibilizing agent

机译:不相容的聚乳酸/聚己内酯共混物通过电子束辐照并添加相容剂而增容

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The aim of this study was to compatibilize immiscible poly(lactic acid) (PLA)/poly(s-caprolactone) (PCX) blend by using electron-beam radiation method with the addition of a compatibilizing agent. Glycidyl methacrylate (GMA) was chosen as the compatibilizing agent, in the expectation that the GMA plays a role as a monomelic compatibilizer and a reactive agent at the interface between the PLA and the PCL phases. Compatibilization process has been investigated through the melt mixing of the PLA/ PCL and the GMA by using a twin-screw extruder and the exposure of the PLA/PCL/GMA mixture to electron-beam radiation at room temperature. The melt mixing process was performed to locate the GMA at the interface, thereby expecting a finer morphology due to the GMA as the monomeric plasticizer. The exposure process was carried out to induce definite interfacial adhesion at the interface through electron-beam initiated cross-copolymerization by the medium of the GMA as the reactive agent. To investigate the results of this compatibilization strategy, the morphological, mechanical, and rheological properties of the blend were analyzed. The morphological study clearly showed the reduced particle size of dispersed PCL domains and significantly improved interfacial adhesion by the electron-beam irradiation with the addition of the GMA. The stress-strain curves of the blends irradiated at less than 20 kGy showed the typical characteristics of ductile materials. The tensile properties of the blend were strongly affected by the dose of irradiation.
机译:这项研究的目的是通过使用电子束辐射方法并添加相容剂,使不混溶的聚乳酸(PLA)/聚己内酯(PCX)混合物相容。选择甲基丙烯酸缩水甘油酯(GMA)作为增容剂,希望该GMA在PLA和PCL相之间的界面上起单体增容剂和反应剂的作用。通过使用双螺杆挤出机将PLA / PCL和GMA熔融混合并将PLA / PCL / GMA混合物在室温下暴露于电子束辐射下,研究了相容性过程。进行熔融混合工艺以将GMA定位在界面上,从而由于GMA作为单体增塑剂而具有更精细的形貌。进行曝光过程以通过电子束引发的以GMA为反应介质的交叉共聚反应,在界面上引起明确的界面粘附。为了研究这种增容策略的结果,分析了共混物的形态,机械和流变性能。形态学研究清楚地表明,通过添加GMA进行电子束辐照,分散的PCL域的粒径减小,界面粘合力显着提高。在小于20 kGy的辐射下,共混物的应力-应变曲线显示出韧性材料的典型特征。共混物的拉伸性能受辐照剂量的强烈影响。

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