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高密度聚乙烯-聚丙烯共混物:研究纳米/微米级相分离与热机械性能之间的关系。

High-Density Polyethylene-Polypropylene Blends: Examining the Relationship Between Nano/Microscale Phase Separation and Thermomechanical Properties.

作者信息

Jones Hannah, McClements Jake, Ray Dipa, Kalloudis Michail, Koutsos Vasileios

机构信息

School of Engineering, Institute for Materials and Processes, The University of Edinburgh, Sanderson Building, King's Buildings, Edinburgh EH9 3FB, UK.

School of Engineering, Newcastle University, Merz Court, Claremont Road, Newcastle Upon Tyne NE1 7RU, UK.

出版信息

Polymers (Basel). 2025 Jan 10;17(2):166. doi: 10.3390/polym17020166.

Abstract

The phase separation of high-density polyethylene (HDPE)-polypropylene (PP) blends was studied using atomic force microscopy in tapping mode to obtain height and phase images. The results are compared with those from scanning electron microscopy imaging and are connected to the thermomechanical properties of the blends, characterised through differential scanning calorimetry, dynamic mechanical analysis (DMA), and tensile testing. Pure PP, as well as 10:90 and 20:80 weight ratio HDPE-PP blends, showed a homogeneous morphology, but the 25:75 HDPE-PP blends exhibited a sub-micrometre droplet-matrix structure, and the 50:50 HDPE-PP blends displayed a more complex co-continuous nano/microphase-separated structure. These complex phase separation morphologies correlate with the increased loss modulus (viscous properties) of the corresponding blends as measured by DMA, demonstrating the potential for the creation of strong and simultaneously tough, energy-absorbing materials for numerous applications.

摘要

采用轻敲模式的原子力显微镜研究了高密度聚乙烯(HDPE)-聚丙烯(PP)共混物的相分离,以获取高度和相位图像。将结果与扫描电子显微镜成像结果进行比较,并与共混物的热机械性能相关联,通过差示扫描量热法、动态力学分析(DMA)和拉伸试验对其进行表征。纯PP以及重量比为10:90和20:80的HDPE-PP共混物呈现出均匀的形态,但25:75的HDPE-PP共混物呈现出亚微米级的液滴-基体结构,而50:50的HDPE-PP共混物则呈现出更复杂的共连续纳米/微相分离结构。这些复杂的相分离形态与通过DMA测量的相应共混物的损耗模量(粘性特性)增加相关,这表明有可能为众多应用制造出强度高且同时坚韧、能吸收能量的材料。

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