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Isothermal Cold Crystallization Heat Resistance and Tensile Performance of Polylactide/Thermoplastic Polyester Elastomer (PLA/TPEE) Blends: Effects of Annealing and Reactive Compatibilizer

机译:聚丙交酯/热塑性聚酯弹性体(PLA / TPEE)共混物的等温冷结晶耐热性和拉伸性能:退火和反应性相容剂的影响

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摘要

The combined influences of crystallinity and reactive compatibilizer—a multifunctional epoxide (ADR)—on morphology, tensile performance, and heat resistance of polylactide/thermoplastic polyester elastomer (PLA/TPEE) (80/20) blends were investigated. Annealing involved an isothermal cold crystallization of PLA matrix was performed to increase crystallinity of the samples. First, isothermal cold crystallization kinetics were investigated using differential scanning calorimetry measurement. It was found that the addition of ADR decreased the crystallization rate of the samples. The maximum crystallinity of the annealed samples also decreased from 40% to 34% while ADR loading increased from zero to 1.0 phr. Furthermore, influence of crystallinity on mechanical performances of the PLA/TPEE sample was researched. The heat resistance of the sample showed a significant enhancement while increasing its crystallinity. Meanwhile, the tensile ductility of the crystallized PLA/TPEE sample became very poor due to the embrittlement with increased crystallinity and the incompatibility between PLA and TPEE. However, the annealed PLA/TPEE/ADR samples with high crystallinity kept a higher tensile ductility because ADR greatly improved the interfacial compatibility. Differences in tensile fracture behaviors of the quenched and annealed PLA/TPEE samples with and without ADR were discussed in detail. At last, crystallized PLA/TPEE/ADR blends with excellent heat resistance and high tensile ductility were obtained by annealing and reactive compatibilization.
机译:研究了结晶度和反应性增容剂(多功能环氧化物(ADR))对聚丙交酯/热塑性聚酯弹性体(PLA / TPEE)(80/20)共混物的形态,拉伸性能和耐热性的综合影响。退火涉及对PLA基质进行等温冷结晶,以提高样品的结晶度。首先,使用差示扫描量热法测量了等温冷结晶动力学。发现添加ADR降低了样品的结晶速率。退火样品的最大结晶度也从40%降低到34%,而ADR加载量从零增加到1.0 phr。此外,研究了结晶度对PLA / TPEE样品力学性能的影响。样品的耐热性显着提高,同时增加了其结晶度。同时,结晶的PLA / TPEE样品的拉伸延展性变得非常差,这是由于脆性增加了结晶度以及PLA和TPEE之间的不相容性。然而,具有高结晶度的退火PLA / TPEE / ADR样品保持了较高的拉伸延展性,因为ADR极大地改善了界面相容性。详细讨论了在有和没有ADR的情况下,淬火和退火的PLA / TPEE样品在拉伸断裂行为上的差异。最后,通过退火和反应增容,获得了具有优异耐热性和高拉伸延展性的结晶PLA / TPEE / ADR共混物。

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