聚(碳酸乙烯酯)/有机土复合材料的玻璃化转变温度和机械性能

N. Ramlee, Nur Syazwani Antong Ibrahim, Baxley Jinuin Victor, N. Shaari
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摘要

聚(碳酸乙烯酯)(PEC)是脂肪族聚碳酸酯的一种,是一种通过二氧化碳和环氧化物共聚而成的可生物降解聚合物。这些脂肪族碳酸盐的热稳定性和机械性能较差,原因在于碳结构的柔韧性,这限制了它们的应用。本研究通过将 PEC 与有机土 CP180 相结合,解决了添加有机土的 PEC 的弱点。研究采用物理混合技术生成了有机土比例为 10-50 wt.%的 PEC/有机土复合材料。使用差示扫描量热仪(DSC)分析了混合材料的热特性,并使用万能拉伸机测量了其机械特性。场发射扫描电子显微镜(FESEM)分析确定了混合物的形态。在 PEC 基体中添加 CP180 材料之前,所有曲线的扭矩值都在增长,但后来变得恒定。由于 PEC 基体的剪切增稠行为与有机粘土的添加有关,因此它达到了一个很高的值。添加 40 wt.%的有机粘土后,PEC 的 Tg 增加了 7°C 以上,这明显阻碍了 PEC 的柔韧性,显著提高了该 PEC 的韧性。从 FESEM 图像中可以看出,随着粘土含量的不断增加,大硅酸盐的形成开始有效地聚集,降低了有机粘土与 PEC 之间的界面面积,添加 50 wt.%的有机粘土即可证明这一点。
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Glass Transition Temperature and Mechanical Properties of Poly(Ethylene Carbonate)/Organoclay Composites
Poly(ethylene carbonate) (PEC) is a form of aliphatic polycarbonate, a biodegradable polymer made via the copolymerization of carbon dioxide and epoxides. The poor thermal stability and mechanical properties of these aliphatic carbonates are attributed to the carbon structure's flexibility, which restricts their applications. By combining PEC with organoclay CP180, this study addressed the weaknesses of PEC with organoclay addition. A physical blending technique was employed to generate PEC/organoclay composites with a 10-50 wt.% ratio of organoclay. The blended material's thermal characteristics were analyzed using differential scanning calorimetry (DSC), and the mechanical characteristics were measured using a universal tensile machine. The Field Emission Scanning Electron Microscopy (FESEM) analysis determined the blends' morphology. Before the torque value for all curves grew with the addition of CP180 material to the PEC matrix, it became constant. It reached a high value due to the shear-thickening behavior of the PEC matrix with organoclay addition. Tg of PEC increased by more than 7°C by 40 wt.% organoclay addition, as evident in the hindrance of PEC flexibility, significantly increased the toughness of this PEC. From the FESEM images, the formation of large silicate starts to aggregate effectively, lowering the interfacial area between organoclay and PEC as the clay content continues to rise, as shown by 50 wt.% organoclay addition.
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