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聚丙烯/麻纤维生物复合材料的热机械和化学性能表征:马来酸酐增容剂和纤维含量的影响

Characterization of Thermo-Mechanical and Chemical Properties of Polypropylene/Hemp Fiber Biocomposites: Impact of Maleic Anhydride Compatibilizer and Fiber Content.

作者信息

da Silveira Pedro Henrique Poubel Mendonça, Santos Mônica Cristina Celestino Dos, Chaves Yago Soares, Ribeiro Matheus Pereira, Marchi Belayne Zanini, Monteiro Sergio Neves, Gomes Alaelson Vieira, Tapanes Neyda de La Caridad Om, Pereira Patricia Soares da Costa, Bastos Daniele Cruz

机构信息

Department of Materials Science, Military Institute of Engineering-IME, Praça General Tibúrcio, 80, Urca, Rio de Janeiro 22290-270, Brazil.

Department of Materials, Rio de Janeiro State University, West Zone Campus -UERJ-ZO, Avenida, Manuel Caldeira de Alvarenga, 1203-Campo Grande, Rio de Janeiro 23070-200, Brazil.

出版信息

Polymers (Basel). 2023 Aug 1;15(15):3271. doi: 10.3390/polym15153271.

Abstract

This article presents a comprehensive study on the physical, mechanical, thermal, and chemical properties of polypropylene (PP) composites reinforced with hemp fibers (HF) and compatibilized with maleic anhydride (MAPP). The composites were processed using a twin-screw extruder, followed by hot compression at 190 °C. Subsequently, the composites were analyzed using Izod impact and Shore D hardness tests to evaluate their mechanical properties. Thermal properties were investigated through differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA), while X-ray diffraction (XRD) and Fourier-transform infrared spectroscopy (FTIR) were employed to study their chemical properties. Additionally, a statistical analysis was conducted to compare the average results of the impact and hardness tests. XRD analysis revealed that the addition of HF and MAPP led to the disappearance of peaks corresponding to the beta phase in pure PP. Hemp fibers exhibited an impressive crystallinity of 82.10%, surpassing other natural fibers, and had a significant molecular orientation angle (MFA) of 6.06°, making them highly desirable for engineering applications. The crystallite size was observed to be relatively large, at 32.49 nm. FTIR analysis demonstrated strong interactions between the fiber, compatibilizing agent, and polymer matrix. TGA tests showed that the addition of 5 and 10 wt.% MAPP resulted in complete degradation of the composites, similar to pure PP. DSC analyses indicated a reduction in crystallinity (X) due to the incorporation of HF and MAPP. Shore D hardness tests revealed an increase in hardness with the addition of 5 wt.% MAPP, while a steep decline in this property was observed with 10 wt.% MAPP. In terms of impact resistance, fractions of 3 and 5 wt.% MAPP in the composites exhibited improved performance compared to the pure polymer. Analysis of variance (ANOVA) was employed to ensure the statistical reliability of the mechanical test results. This comprehensive study sheds light on the diverse properties of PP composites reinforced with hemp fibers and compatibilized with MAPP, emphasizing their potential as sustainable materials for engineering applications. The results contribute to the understanding of the structural and functional aspects of these composites, guiding future research and developments in the field.

摘要

本文对用麻纤维(HF)增强并用马来酸酐(MAPP)增容的聚丙烯(PP)复合材料的物理、机械、热和化学性能进行了全面研究。复合材料采用双螺杆挤出机加工,随后在190℃下进行热压。随后,使用悬臂梁冲击和邵氏D硬度测试对复合材料进行分析,以评估其机械性能。通过差示扫描量热法(DSC)和热重分析(TGA)研究热性能,同时采用X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)研究其化学性能。此外,进行了统计分析以比较冲击和硬度测试的平均结果。XRD分析表明,添加HF和MAPP导致纯PP中对应β相的峰消失。麻纤维表现出令人印象深刻的82.10%的结晶度,超过其他天然纤维,并且具有6.06°的显著分子取向角(MFA),使其非常适合工程应用。观察到微晶尺寸相对较大,为32.49nm。FTIR分析表明纤维、增容剂和聚合物基体之间存在强相互作用。TGA测试表明,添加5wt.%和10wt.%的MAPP导致复合材料完全降解,与纯PP类似。DSC分析表明,由于加入HF和MAPP,结晶度(X)降低。邵氏D硬度测试表明,添加5wt.%的MAPP会使硬度增加,而添加10wt.%的MAPP时则观察到该性能急剧下降。在抗冲击性方面,复合材料中3wt.%和5wt.%的MAPP组分与纯聚合物相比表现出更好的性能。采用方差分析(ANOVA)来确保机械测试结果的统计可靠性。这项全面的研究揭示了用麻纤维增强并用MAPP增容的PP复合材料的多种性能,强调了它们作为工程应用可持续材料的潜力。这些结果有助于理解这些复合材料的结构和功能方面,指导该领域未来的研究和发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d43/10422450/e32aeaba796d/polymers-15-03271-g001.jpg

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