A Novel Microwave Treatment to Augment the Mechanical Properties of Polymeric Materials

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Abstract

The present study portrays a novel post-processing treatment by using microwave radiations for enhancing the mechanical properties of five commonly used engineering polymers, Poly-amide (PA), Poly-butylene-terephthalate (PBT), Poly-propylene (PP), Poly-carbonate (PC), Acrylonitrile-butadiene-styrene (ABS). The analysis revealed that the crystal structures of the polymers improved after the treatment due to a more favorable rearrangement of crystalline segments within the polymers. Furthermore, tensile properties and tribological performance of microwave treated polymers were found to be significantly better when compared to those of untreated counterparts. The tensile strength, elongation, and wear performance of PA increased by 51%, 286%, and 45%, respectively, only after a treatment of 20 seconds. A similar response was also exhibited by other polymers as well. It was noted that the optimum time for microwave treatment could vary depending on the different crystalline nature of the polymers. The degree of randomness in the molecular chains of semi-crystalline polymers is less; thus, it requires less treatment time. However, for amorphous polymers, as randomness increases, more time is needed. As such, post-processing microwave treatment of polymers has proven beneficial as a cost-effective, time-saving, and environment-friendly technique for enhancing material properties significantly.
一种提高高分子材料力学性能的新型微波处理方法
本研究描述了一种新的后处理方法,利用微波辐射来提高五种常用的工程聚合物,聚酰胺(PA),聚对苯二甲酸丁二酯(PBT),聚丙烯(PP),聚碳酸酯(PC),丙烯腈-丁二烯-苯乙烯(ABS)的机械性能。分析表明,处理后聚合物的晶体结构得到改善,因为聚合物内部的晶段重排更加有利。此外,经微波处理的聚合物的拉伸性能和摩擦学性能明显优于未经处理的聚合物。经过20秒的处理,PA的抗拉强度、伸长率和耐磨性能分别提高了51%、286%和45%。其他聚合物也表现出类似的反应。研究指出,微波处理的最佳时间取决于聚合物的不同结晶性质。半结晶聚合物分子链的随机性较小;因此,它需要更少的治疗时间。然而,对于非晶聚合物,随着随机性的增加,需要更多的时间。因此,聚合物的后处理微波处理已被证明是一种具有成本效益,节省时间和环境友好的技术,可显着提高材料性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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