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Thermomechanical and Morphological Properties of Poly(ethylene terephthalate)/Anhydrous Calcium Terephthalate Nanocomposites

机译:聚对苯二甲酸乙二酯/无水对苯二甲酸钙纳米复合材料的热力学和形态学性质

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摘要

Calcium terephthalate anhydrous salts (CATAS), synthetized by reaction of terephthalic acid with metal (Ca) oxide were incorporated at different weight contents (0–30 wt. %) in recycled Poly(ethylene terephthalate) (rPET) by melt processing. Their structure, morphology, thermal and mechanical properties (tensile and flexural behavior) were investigated. Results of tensile strength of the different formulations showed that when the CATAS content increased from 0.1 to 0.4 wt. %, tangible changes were observed (variation of tensile strength from 65.5 to 69.4 MPa, increasing value for E from 2887 up to 3131 MPa, respectively for neat rPET and rPET_0.4CATAS). A threshold weight amount (0.4 wt. %) of CATAS was also found, by formation at low loading, of a rigid amorphous fraction at the rPET/CATAS interface, due to the aromatic interactions (π−π conjugation) between the matrix and the filler. Above the threshold, a restriction of rPET/CATAS molecular chains mobility was detected, due to the formation of hybrid mechanical percolation networks. Additionally, enhanced thermal stability of CATAS filled rPET was registered at high content (T shift from 426 to 441 °C, respectively, for rPET and rPET_30CATAS), essentially due to chemical compatibility between terephthalate salts and polymer molecules, rich in stable aromatic rings. The singularity of a cold crystallization event, identified at the same loading level, confirmed the presence of an equilibrium state between nucleation and blocking effect of amorphous phase, basically related to the characteristic common terephthalate structure of synthetized Ca–Metal Organic Framework and the rPET matrix.
机译:通过对苯二甲酸与金属(Ca)氧化物反应合成的对苯二甲酸钙无水盐(CATAS)通过熔体加工以不同的重量含量(0–30 wt。%)掺入回收的聚对苯二甲酸乙二醇酯(rPET)中。研究了它们的结构,形态,热和机械性能(拉伸和弯曲行为)。不同配方的抗张强度结果表明,当CATAS的含量从0.1 wt。%增加到0.4 wt。%时。 %,观察到明显的变化(纯rPET和rPET_0.4CATAS的E值从2887增加到3131MPa,E值从65.5变化到69.4MPa)。通过在低负荷下形成rPET / CATAS界面处的刚性无定形部分,还发现了CATAS的阈值重量(0.4 wt。%),这是由于基体与分子之间的芳香相互作用(π-π共轭)所致。填料。超过阈值,由于形成了混合机械渗滤网络,因此检测到了rPET / CATAS分子链迁移的限制。此外,高含量的CATAS填充的rPET的热稳定性得到了提高(rPET和rPET_30CATAS的T转变分别为426至441°C),这主要是由于对苯二甲酸盐和富含稳定芳环的聚合物分子之间的化学相容性。在相同的载荷水平下鉴定出的冷结晶事件的奇异性,证实了成核与非晶相阻滞作用之间存在平衡状态,这基本上与合成的Ca-金属有机骨架和rPET基质的常见对苯二甲酸酯结构有关。

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