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利用升级再造的石墨烯纳米片涂层玻璃纤维作为性能增强剂和增容剂,以提高聚丙烯/玻璃纤维/石墨烯纳米片复合材料的机械性能。

Utilizing Upcycled Graphene Nanoplatelet-Coated Glass Fibers as a Performance Booster and Compatibilizer for Enhanced Mechanical Performance of Polypropylene/Glass Fiber/Graphene Nanoplatelet Composites.

作者信息

Şahin Dündar Gülayşe, Saner Okan Burcu

机构信息

Department of Materials Science and Nano Engineering, Faculty of Engineering and Natural Sciences, Sabanci University, Orhanli-Tuzla, Istanbul 34956, Turkey.

Sabanci University Integrated Manufacturing Technologies Research and Application Center & Composite Technologies Center of Excellence, Teknopark Istanbul, Pendik, Istanbul 34906, Turkey.

出版信息

ACS Omega. 2024 Apr 2;9(15):17432-17445. doi: 10.1021/acsomega.4c00214. eCollection 2024 Apr 16.

Abstract

The high usage ratio and elevated density of glass fibers (GFs), often surpassing twice that of polymers, can contribute to undesired increases in the overall density of polymeric materials. One potential solution is the incorporation of graphene as a secondary additive, offering a lower specific gravity and exceptional mechanical properties. In light of this, waste tire-derived graphene nanoplates (GNPs) were optimized for coating onto GFs by considering factors such as surface treatment of the fiber, the dispersion quality of GNP, and the coating technique. The resulting GNP-coated GF (GNP-c-GF) was initially incorporated into pure polypropylene (PP) at low weight percentages (0.1-1 wt %), and 31% increase in the tensile modulus was achieved compared to neat PP. Subsequently, 1 wt % GNP-c-GF was utilized as a compatibilizer in PP/GF/GNP composites to enhance the compatibility between GNP and GF. By strategically incorporating GNP and GNP-c-GF at a lower GF ratio, the detrimental impact on the tensile modulus of 30% GF-filled PP was effectively mitigated, leading to a remarkable enhancement to an impressive value of 5658 MPa. The successful integration of GNP and GNP-c-GF exemplifies their promising potential as additives for achieving superior mechanical properties in composite materials, while concurrently promoting the utilization of recycled content.

摘要

玻璃纤维(GFs)的高使用率和高密度,通常超过聚合物的两倍,可能会导致聚合物材料的整体密度出现不必要的增加。一种潜在的解决方案是加入石墨烯作为第二添加剂,它具有较低的比重和优异的机械性能。有鉴于此,通过考虑纤维的表面处理、石墨烯纳米片(GNPs)的分散质量和涂层技术等因素,对废轮胎衍生的GNPs进行了优化,以使其能够涂覆在GFs上。所得的涂覆有GNPs的GF(GNP-c-GF)最初以低重量百分比(0.1-1 wt%)加入到纯聚丙烯(PP)中,与纯PP相比,拉伸模量提高了31%。随后,1 wt%的GNP-c-GF被用作PP/GF/GNP复合材料中的增容剂,以增强GNP和GF之间的相容性。通过以较低的GF比例策略性地加入GNP和GNP-c-GF,有效减轻了对30% GF填充PP拉伸模量的不利影响,使其显著提高至令人印象深刻的5658 MPa。GNP和GNP-c-GF的成功整合证明了它们作为添加剂在复合材料中实现优异机械性能的巨大潜力,同时也促进了回收材料的利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ce7/11024938/2870f5ff27e1/ao4c00214_0001.jpg

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