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基于 PLA 的可生物降解生物纳米复合材料纤维,用纳米纤维素增强:性能的开发与分析。

PLA based biodegradable bionanocomposite filaments reinforced with nanocellulose: development and analysis of properties.

机构信息

Mechanical Engineering Department, Motilal Nehru National Institute of Technology Allahabad, Prayagraj, 211004, UP, India.

出版信息

Sci Rep. 2024 Oct 11;14(1):23819. doi: 10.1038/s41598-024-71619-5.

Abstract

The 3D printing technique has recently become more prevalent among researchers for the fabrication of nanocomposites. The low crystallinity of polylactic acid (PLA) leads to the poor mechanical and thermal properties of its 3D-printed products, which restrict their applications in many fields. To overcome the limitations of PLA, the present work aims to develop PLA-based bionanocomposite filaments with varying percentages (1, 3, and 5 wt%) of crystalline nanocellulose (CNC) through a single screw extruder. The filaments will be further utilized for the development of bionanocomposite samples to evaluate their properties. The effect of CNC reinforcement on the chemical structure of the filaments was analyzed by FTIR analysis. XRD analysis revealed that the crystallinity of the filaments was significantly improved due to the nucleating effect of CNC. The maximum crystallinity was observed in the filament containing 1 wt% CNC, which was 26% higher than the pure PLA filament. The thermal and mechanical performance of the filaments was also considerably improved after CNC reinforcement, which was confirmed by DSC-TGA and tensile test analysis. The maximum tensile strength and tensile modulus were observed to be 48.9 MPa and 1700 MPa, respectively, in the filament reinforced with 1 wt% CNC, which was 35.5% and 21.89%, respectively, higher than those of the pure PLA filament. Rheological analysis showed that the complex viscosity, storage modulus, and loss modulus of the filaments were significantly affected by the reinforcement of CNC.

摘要

3D 打印技术最近在研究人员中变得越来越流行,用于制造纳米复合材料。聚乳酸(PLA)的低结晶度导致其 3D 打印产品的机械和热性能较差,限制了它们在许多领域的应用。为了克服 PLA 的局限性,本工作旨在通过单螺杆挤出机开发具有不同百分比(1、3 和 5wt%)结晶纳米纤维素(CNC)的 PLA 基生物纳米复合材料长丝。将进一步利用这些长丝来开发生物纳米复合材料样品,以评估它们的性能。通过傅里叶变换红外(FTIR)分析研究了 CNC 增强对长丝化学结构的影响。X 射线衍射(XRD)分析表明,由于 CNC 的成核作用,长丝的结晶度显著提高。在含有 1wt%CNC 的长丝中观察到最大结晶度,比纯 PLA 长丝高 26%。通过 CNC 增强,长丝的热性能和机械性能也得到了显著提高,这通过差示扫描量热法-热重分析(DSC-TGA)和拉伸试验分析得到了证实。在增强 1wt%CNC 的长丝中,观察到最大拉伸强度和拉伸模量分别为 48.9MPa 和 1700MPa,分别比纯 PLA 长丝高 35.5%和 21.89%。流变分析表明,CNC 增强显著影响长丝的复合粘度、储能模量和损耗模量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3653/11470091/18992bbcb934/41598_2024_71619_Fig1_HTML.jpg

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