Bernardes Giordano P, Andrade Matheus P, Poletto Matheus, Luiz Nathália R, Santana Ruth M C, Forte Maria M de C
Department of Mechatronic Engineering, Atlantic Technological University (ATU) Sligo, Ash Lane, F91 YW50 Sligo, Ireland.
Postgraduate Program in Engineering of Processes and Technologies (PGEPROTEC), University of Caxias Do Sul (UCS), Caxias Do Sul 95070-560, Brazil.
Polymers (Basel). 2023 Nov 4;15(21):4324. doi: 10.3390/polym15214324.
The influences of ethylene-based elastomer (EE) and the compatibilizer agent ethylene-butyl acrylate-glycidyl methacrylate (EBAGMA) on the thermal degradation of PLA/EE blends were evaluated by the thermal degradation kinetics and thermodynamic parameters using thermogravimetry. The presence of EE and EBAGMA synergistically improved the PLA thermal stability. The temperature of 10% of mass loss (T) of PLA was around 365 °C, while in the compatibilized PLA/EE blend, this property increased to 370 °C. The PLA average activation energy (Ea¯) reduced in the PLA/EE blend (from 96 kJ/mol to 78 kJ/mol), while the presence of EBAGMA in the PLA/EE blend increased the Ea¯ due to a better blend compatibilization. The solid-state thermal degradation of the PLA and PLA/EE blends was classified as a D-type degradation mechanism. In general, the addition of EE increased the thermodynamic parameters when compared to PLA and the compatibilized blend due to the increase in the collision rate between the components over the thermal decomposition.
采用热重分析法,通过热降解动力学和热力学参数评估了乙烯基弹性体(EE)和增容剂丙烯酸乙烯酯-甲基丙烯酸缩水甘油酯(EBAGMA)对聚乳酸/EE共混物热降解的影响。EE和EBAGMA的存在协同提高了聚乳酸的热稳定性。聚乳酸10%质量损失温度(T)约为365℃,而在增容聚乳酸/EE共混物中,该性能提高到370℃。聚乳酸/EE共混物中聚乳酸的平均活化能(Ea¯)降低(从96 kJ/mol降至78 kJ/mol),而聚乳酸/EE共混物中EBAGMA的存在由于更好地实现了共混物的增容而使Ea¯增加。聚乳酸和聚乳酸/EE共混物的固态热降解被归类为D型降解机理。总体而言,与聚乳酸及增容共混物相比,EE的添加提高了热力学参数,这是由于热分解过程中各组分间碰撞速率增加所致。