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拉伸吹塑成型过程中rPET含量及瓶坯加热/冷却条件对vPET-rPET共混物微空化和固态后缩聚的影响:第一部分——研究方法与结果

Effect of rPET Content and Preform Heating/Cooling Conditions in the Stretch Blow Molding Process on Microcavitation and Solid-State Post-Condensation of vPET-rPET Blend: Part I-Research Methodology and Results.

作者信息

Wawrzyniak Paweł, Karaszewski Waldemar, Różański Artur

机构信息

Faculty of Automotive and Construction Machinery Engineering, Warsaw University of Technology, 84 Ludwika Narbutta Street, 02-524 Warsaw, Poland.

Faculty of Mechanical Engineering and Ship Technology, Gdańsk University of Technology, 11/12 Gabriela Narutowicza Street, 80-233 Gdańsk, Poland.

出版信息

Materials (Basel). 2024 Oct 27;17(21):5233. doi: 10.3390/ma17215233.

Abstract

Polyethylene terephthalate (PET) is widely used in bottle production due to its cost-effectiveness and low environmental impact. The first part of this article describes the research and statistical analysis methodology of the influence of the virgin PET (vPET) and recycled PET (rPET) content in the vPET-rPET blend, as well as the preform heating/cooling conditions in the stretch blow molding (SBM) process on the microscopic bottle properties. Microscopic properties such as crystallinity, density, viscosity, relaxation degree of the amorphous phase, and microcavitation in PET were examined. This study reveals that microcavity and solid-state post-condensation effects occur during PET deformation in the SBM process. The increase in free volume, indicating microcavitation, was confirmed by measuring positron annihilation lifetime spectroscopy (PALS). PALS and density of the amorphous phase studies prove a reduction in the dimensions of the free volumes, with a simultaneous significant increase in their number and ellipsoidization. It can be associated with crystallite rotation in a temperature-dependent non-crystalline matrix. The occurrence of solid-state post-condensation effects was confirmed by measuring the intrinsic viscosity. The conclusions resulting from the analysis of the microstructure affecting the mechanical strength of the material were validated by pressure resistance tests of the bottles.

摘要

聚对苯二甲酸乙二酯(PET)因其成本效益高和对环境影响小而被广泛用于瓶子生产。本文的第一部分描述了原生PET(vPET)与回收PET(rPET)在vPET-rPET共混物中的含量以及拉伸吹塑(SBM)过程中的瓶坯加热/冷却条件对瓶子微观性能影响的研究和统计分析方法。研究了PET中的结晶度、密度、粘度、非晶相的松弛度和微空化等微观性能。该研究表明,在SBM过程中PET变形期间会发生微空化和固态后缩聚效应。通过测量正电子湮没寿命谱(PALS)证实了表明微空化的自由体积增加。PALS和非晶相密度研究证明自由体积尺寸减小,同时其数量和椭球化显著增加。这可能与温度依赖性非晶基体中的微晶旋转有关。通过测量特性粘度证实了固态后缩聚效应的发生。通过瓶子的耐压测试验证了由影响材料机械强度的微观结构分析得出的结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f15b/11548011/928b91c9e38b/materials-17-05233-g002.jpg

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