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二氧化钛对消费后聚对苯二甲酸乙二酯瓶废料机械回收的影响:拉伸与断裂行为

Impact of Titanium Dioxide in the Mechanical Recycling of Post-Consumer Polyethylene Terephthalate Bottle Waste: Tensile and Fracture Behavior.

作者信息

Loaeza David, Cailloux Jonathan, Santana Pérez Orlando, Sánchez-Soto Miguel, Maspoch Maria Lluïsa

机构信息

Centre Català del Plàstic-Universitat Politècnica de Catalunya Barcelona Tech (EEBE-UPC), Av. d'Eduard Maristany, 16, 08019 Barcelona, Spain.

出版信息

Polymers (Basel). 2021 Jan 19;13(2):310. doi: 10.3390/polym13020310.

Abstract

This work provides an experimental analysis regarding the fracture behavior of recycled opaque PET (rPET-O) containing titanium dioxide (TiO) under plane stress conditions. For this purpose, a commercially post-consumer transparent colored/opaque PET flakes mix was processed using a semi-industrial extrusion calendering process. The manufactured rPET-O sheets had a TiO content of 1.45 wt.%. The mechanical and fracture properties of unaged and physically aged (1 year) samples were determined through uniaxial tensile experiments and the Essential Work of Fracture (EWF) methodology, respectively, and were compared to those of recycled transparent PET (rPET-T). Under tensile loading, independently of the aging time, rPET-O samples exhibited similar mechanical behavior as rPET-T up to the yield point. The main differences remained in the post-yielding region. The presence of TiO particles allowed reducing the strain energy density up to neck formation in aged samples. Regarding the EWF analysis, it is argued that the energy consumed up to the onset of crack propagation (w) for rPET-T was mainly dependent of the molecular mobility. That is, the w value decreased by 26% when rPET-T was physically aged. Interestingly, w values remained independent of the aging time for rPET-O. In fact, it was highlighted that before crack propagation, the EWF response was principally governed by matrix cavitation ahead of the crack tip, which allowed a significant release of the triaxial stress state independently of the molecular mobility. This property enabled rPET-O to exhibit a resistance to crack initiation 17% higher as compared to rPET-T when the material was physically aged. Finally, independently of the aging time, rPET-O exhibited a resistance to crack growth approximately 21% larger than rPET-T due to matrix fibrillation in large scale deformation.

摘要

这项工作提供了关于含二氧化钛(TiO₂)的回收不透明聚对苯二甲酸乙二酯(rPET-O)在平面应力条件下断裂行为的实验分析。为此,使用半工业挤出压延工艺对商业消费后的透明彩色/不透明PET薄片混合物进行加工。制造的rPET-O片材的TiO₂含量为1.45 wt.%。分别通过单轴拉伸实验和断裂基本功(EWF)方法测定了未老化和物理老化(1年)样品的力学和断裂性能,并与回收透明PET(rPET-T)的性能进行了比较。在拉伸载荷下,与老化时间无关,rPET-O样品在屈服点之前表现出与rPET-T相似的力学行为。主要差异存在于屈服后区域。TiO₂颗粒的存在使得老化样品在颈缩形成之前能够降低应变能密度。关于EWF分析,有人认为rPET-T在裂纹扩展开始之前消耗的能量(w)主要取决于分子迁移率。也就是说,当rPET-T进行物理老化时,w值降低了26%。有趣的是,rPET-O的w值与老化时间无关。事实上,研究强调在裂纹扩展之前,EWF响应主要由裂纹尖端前方的基体空化控制,这使得能够显著释放三轴应力状态,而与分子迁移率无关。当材料进行物理老化时,这一特性使rPET-O表现出比rPET-T高17%的抗裂纹萌生能力。最后,与老化时间无关,由于在大规模变形中基体原纤化,rPET-O表现出比rPET-T大约大21%的抗裂纹扩展能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b4e/7836008/86c5df0e7813/polymers-13-00310-g001.jpg

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