具有可调谐晶体结构的多层高密度聚乙烯的制备与表征

IF 4 2区 化学 Q2 POLYMER SCIENCE
Yi-Jie Ma, Jia-Wei Gong, Bin Chen, Ying Zhang, Gan-Ji Zhong, Zhong-Ming Li, Xue-Qin Gao
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引用次数: 0

摘要

在旋转挤压管件中,采用常规加工方法制备的高密度聚乙烯(HDPE)管材耐压性差,韧性低。本研究介绍了一种创新的旋转剪切系统(RSS),通过控制芯轴旋转和冷却速度来解决这些缺陷。我们成功制备了球形和羊肉串晶体相结合的三层结构自增强HDPE管。旋转处理使分子链沿环形方向排列,形成羊肉串晶体。结果表明,旋转加工后的三层烤羊肉串结构(TSK)管材的环空抗拉强度由26.7 MPa提高到76.3 MPa,提高了185.8%。值得注意的是,在保持优异的抗拉强度(73.4 MPa)的同时,球晶羊肉串球晶羊肉串(KSK)管的断裂伸长率提高到50.1%,而KSK管的断裂伸长率为33.8%。这种改进可归因于SKS管内微观形态和聚合物结构的变化,特别是由于形成了小尺寸的羊肉串晶体和低程度的联锁。此外,2D-SAXS分析显示,KSK管具有更高的抗拉强度,这是由于晶体尺寸更小,晶粒尺寸更大,形成致密的互锁结构。相比之下,SKS和TSK管具有更厚的非晶区和更小的shish尺寸,导致联锁和力学性能降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preparation and Characterization of Multilayered High-density Polyethylene with Tunable Crystalline Structure

In rotationally extruded fittings, high-density polyethylene (HDPE) pipes prepared using conventional processing methods often suffer from poor pressure resistance and low toughness. This study introduces an innovative rotary shear system (RSS) to address these deficiencies through controlled mandrel rotation and cooling rates. We successfully prepared self-reinforced HDPE pipes with a three-layer structure combining spherical and shish-kebab crystals. Rotational processing aligned the molecular chains in the ring direction and formed shish-kebab crystals. As a result, the annular tensile strength of the rotationally processed three-layer shish-kebab structure (TSK) pipe increased from 26.7 MPa to 76.3 MPa, an enhancement of 185.8%. Notably, while maintaining excellent tensile strength (73.4 MPa), the elongation at break of the spherulite shishkebab spherulite (SKS) tubes was improved to 50.1%, as compared to 33.8% in the case of shish-kebab spherulite shish-kebab (KSK) tubes. This improvement can be attributed to the changes in the micro-morphology and polymer structure within the SKS tubes, specifically due to the formation of small-sized shish-kebab crystals and the low degrees of interlocking.In addition,2D-SAXS analysis revealed that KSK tubes have higher tensile strength due to smaller crystal sizes and larger shish dimensions, forming dense interlocking structures. In contrast, the SKS and TSK tubes had thicker amorphous regions and smaller shish sizes, resulting in reduced interlocking and mechanical performance.

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来源期刊
Chinese Journal of Polymer Science
Chinese Journal of Polymer Science 化学-高分子科学
CiteScore
7.10
自引率
11.60%
发文量
218
审稿时长
6.0 months
期刊介绍: Chinese Journal of Polymer Science (CJPS) is a monthly journal published in English and sponsored by the Chinese Chemical Society and the Institute of Chemistry, Chinese Academy of Sciences. CJPS is edited by a distinguished Editorial Board headed by Professor Qi-Feng Zhou and supported by an International Advisory Board in which many famous active polymer scientists all over the world are included. The journal was first published in 1983 under the title Polymer Communications and has the current name since 1985. CJPS is a peer-reviewed journal dedicated to the timely publication of original research ideas and results in the field of polymer science. The issues may carry regular papers, rapid communications and notes as well as feature articles. As a leading polymer journal in China published in English, CJPS reflects the new achievements obtained in various laboratories of China, CJPS also includes papers submitted by scientists of different countries and regions outside of China, reflecting the international nature of the journal.
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