Epoxy composite dust reinforced novel polypropylene composites: An eco‐friendly approach toward sustainable resource management

IF 3.2 4区 工程技术 Q2 ENGINEERING, CHEMICAL
Hitesh Sharma, Sandeep Gairola, Joy Prakash Misra, Inderdeep Singh
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引用次数: 0

Abstract

This study presents an innovative technique for recycling leftover epoxy composites reinforced with natural fillers. The waste epoxy composites were successfully ground into a 75–150 μm fine powder. With the aid of extrusion injection molding, this powder was subsequently utilized to create polypropylene matrix‐based polymer composites with variable filler loadings ranging from 10% to 30%. The mechanical, thermal, thermomechanical, and morphological properties of the developed composites were assessed. The greatest tensile strength of the polypropylene composites produced with 10% filler loading was found to be 24.15 MPa. The addition of epoxy composite filler increased the thermal stability. During morphological investigations, it was discovered that pits, voids, and filler agglomerations predominated the fractured surface of the developed composites. Overall, it can be concluded that there is a lot of promise for value‐added recycling of thermosetting resin‐based composites using this low‐cost, high‐efficiency, and ecologically benign process, which would lessen the environmental impact of plastic.Highlights Novel polypropylene composites using epoxy composite dust was developed. Mechanical, thermal, thermomechanical, and morphological studies were performed. Toys, tableware, mementos, and furniture can be the potential applications. The developed composites can reduce plastic load on the environment.
环氧树脂复合粉尘增强新型聚丙烯复合材料:实现可持续资源管理的环保方法
本研究提出了一种回收利用天然填料增强的剩余环氧树脂复合材料的创新技术。废弃环氧树脂复合材料被成功研磨成 75-150 μm 的细粉末。借助挤出注塑成型技术,这种粉末随后被用来制造以聚丙烯为基体的聚合物复合材料,其填料含量从 10%到 30%不等。对所开发复合材料的机械、热、热力学和形态特性进行了评估。结果发现,填充量为 10%的聚丙烯复合材料的最大拉伸强度为 24.15 兆帕。环氧树脂复合填料的加入提高了热稳定性。在形态学研究中发现,所开发复合材料的断裂表面主要是凹坑、空洞和填料团聚。总之,利用这种低成本、高效率和生态无害的工艺对热固性树脂基复合材料进行增值回收利用大有可为,可减少塑料对环境的影响。进行了力学、热学、热力学和形态学研究。玩具、餐具、纪念品和家具都是潜在的应用领域。所开发的复合材料可减少塑料对环境的负荷。
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来源期刊
Polymer Engineering and Science
Polymer Engineering and Science 工程技术-高分子科学
CiteScore
5.40
自引率
18.80%
发文量
329
审稿时长
3.7 months
期刊介绍: For more than 30 years, Polymer Engineering & Science has been one of the most highly regarded journals in the field, serving as a forum for authors of treatises on the cutting edge of polymer science and technology. The importance of PE&S is underscored by the frequent rate at which its articles are cited, especially by other publications - literally thousand of times a year. Engineers, researchers, technicians, and academicians worldwide are looking to PE&S for the valuable information they need. There are special issues compiled by distinguished guest editors. These contain proceedings of symposia on such diverse topics as polyblends, mechanics of plastics and polymer welding.
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