Extruded-Calendered Sheets of Fully Recycled PP/Opaque PET Blends: Mechanical and Fracture Behaviour

被引:5
|
作者
Loaeza, David [1 ]
Cailloux, Jonathan [1 ]
Perez, Orlando Santana [1 ]
Sanchez-Soto, Miguel [1 ]
Maspoch, Maria Lluisa [1 ]
机构
[1] Univ Politecn Catalunya Barcelona Tech EEBE UPC, Ctr Catala Plast, Av Eduard Maristany 16, Barcelona 08019, Spain
关键词
post-consumer opaque PET; titanium dioxide; recycling; post-consumer PP; essential work of fracture; ESSENTIAL WORK; POLYMER BLENDS; COMPOSITES; PP; MORPHOLOGY; COMPATIBILIZATION; CRYSTALLIZATION; POLYPROPYLENE; TEREPHTHALATE; COPOLYMERS;
D O I
10.3390/polym13142360
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
This work presents the experimental results of the mechanical and fracture behaviour of three polymeric blends prepared from two recycled plastics, namely polypropylene and opaque poly (ethylene terephthalate), where the second one acted as a reinforcement phase. The raw materials were two commercial degrees of recycled post-consumer waste, i.e., rPP and rPET-O. Sheets were manufactured by a semi-industrial extrusion-calendering process. The mechanical and fracture behaviours of manufactured sheets were analyzed via tensile tests and the essential work of fracture approach. SEM micrographics of cryofractured sheets revelated the development of in situ rPP/rPET-O microfibrillar composites when 30 wt.% of rPET-O was added. It was observed that the yield stress was not affected with the addition of rPET-O. However, the microfibrillar structure increased the Young's modulus by more than a third compared with rPP, fulfilling the longitudinal value predicted by the additive rule of mixtures. Regarding the EWF analysis, the resistance to crack initiation was highly influenced by the resistance to its propagation owing to morphology-related instabilities during tearing. To analyze the initiation stage, a partition energy method was successfully applied by splitting the total work of fracture into two specific energetic contributions, namely initiation and propagation. The results revelated that the specific essential initiation-related work of fracture was mainly affected by rPET-O phase. Remarkably, its value was significantly improved by a factor of three with the microfibrillar structure of rPET-O phase. The results allowed the exploration of the potential ability of manufacturing in situ MFCs without a "precursor" morphology, providing an economical way to promote the recycling rate of PET-O, as this material is being discarded from current recycling processes.
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页数:21
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