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铁颗粒和聚乙二醇对聚丙交酯基复合材料某些性能的影响。

The Influence of Iron Particles and Polyethylene Glycol on Selected Properties of Polylactide-Based Composites.

作者信息

Oksiuta Zbigniew, Nowińska Dominika, Joka Yildiz Magdalena, Jałbrzykowski Marek

机构信息

Faculty of Biomedical Engineering, Bialystok University of Technology, Wiejska 45C, 15-351 Bialystok, Poland.

Faculty of Civil Engineering and Environmental Sciences, Bialystok University of Technology, Wiejska 45E Street, 15-351 Bialystok, Poland.

出版信息

Polymers (Basel). 2025 Jan 9;17(2):146. doi: 10.3390/polym17020146.

Abstract

This article presents the characteristics of composites comprising polylactide combined with iron powder, from 1 to 10 wt.%, and nanoiron powders with a mass fraction from 0.1 to 1.0 wt.%, along with polyethylene glycol. A total of nine composites were prepared, with three variations each: polylactide with iron powder, polylactide with nanoiron powder, and polylactide with micro- and nanoiron powder combined with polyethylene glycol. The samples underwent mixing, extrusion, and pressing processes. To assess the properties of the resultant composite samples, ultimate tensile tests, Shore hardness tests, fracture surface observations, degradation tests in 0.9% saline solution, and DSC analyses were conducted. The findings revealed that nanoiron powder incorporated into the polylactide matrix demonstrates better tensile properties, both strength and elongation, compared to those incorporating micrometric-iron powder only. However, both iron powder additions led to a decrease in the total elongation of neat polylactide acid except for the composite with 1% nanoiron. Furthermore, all samples with polyethylene glycol addition show a lower Young's modulus compared to neat PLA. In general, the microiron powder decreases the Young's modulus of PLA composites, whereas the nanoiron powder slightly increases the Young's modulus of these samples. Polyethylene glycol, a biocompatible substance, emerged as a suitable candidate for enhancing the adhesion of iron particles and improving the strength and elongation properties of the tested composites. Also, fracture surface analysis of the tensile samples suggests using fine nanoiron particles instead of coarse ones to improve the mechanical properties due to the stronger bonding of nanoiron particles to the PLA matrix.

摘要

本文介绍了由聚丙交酯与质量分数为1%至10%的铁粉、质量分数为0.1%至1.0%的纳米铁粉以及聚乙二醇组成的复合材料的特性。共制备了九种复合材料,每种有三个变体:聚丙交酯与铁粉、聚丙交酯与纳米铁粉、聚丙交酯与微米级和纳米级铁粉并结合聚乙二醇。对样品进行了混合、挤出和压制工艺。为评估所得复合样品的性能,进行了极限拉伸试验、邵氏硬度试验、断口表面观察、在0.9%盐溶液中的降解试验以及差示扫描量热法(DSC)分析。结果表明,与仅加入微米级铁粉的情况相比,加入纳米铁粉的聚丙交酯基体复合材料在强度和伸长率方面均表现出更好的拉伸性能。然而,除了含1%纳米铁粉的复合材料外,两种铁粉的添加都会导致纯聚乳酸的总伸长率下降。此外,所有添加聚乙二醇的样品的杨氏模量均低于纯聚乳酸。总体而言,微米级铁粉会降低聚乳酸复合材料的杨氏模量,而纳米铁粉会使这些样品的杨氏模量略有增加。聚乙二醇作为一种生物相容性物质,是增强铁颗粒附着力以及改善测试复合材料强度和伸长率性能的合适选择。此外,拉伸样品的断口表面分析表明,由于纳米铁粉与聚乳酸基体的结合更强,使用细纳米铁粉而非粗纳米铁粉可改善机械性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc31/11768163/f23fd871a50a/polymers-17-00146-g001.jpg

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