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首页> 外文期刊>Polymer Composites >Experimental investigation on the mechanical and morphological behavior ofProsopis juliflorabark fibers/E-glass/carbon fabrics reinforced hybrid polymeric composites for structural applications
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Experimental investigation on the mechanical and morphological behavior ofProsopis juliflorabark fibers/E-glass/carbon fabrics reinforced hybrid polymeric composites for structural applications

机译:对普罗什甲基甲虫纤维/ E-玻璃/碳织物增强混合聚合物复合材料进行结构应用的实验研究

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摘要

The present world scenario demands for the utilization of natural fiber-reinforced polymeric composites as opposed to synthetic fiber-reinforced composites mainly due to their environmental friendly behavior, availability in abundance, cost-effectiveness, and lightweight and moderately high-strength properties. Along with the above said advantages, the ease of manufacturing of natural fibers has made the researchers around the globe to exploit several locally available natural fibers to understand their feasibility as reinforcement phases in different polymeric composites and their suitability in various commercial and engineering applications. This research investigation has been conducted to discover a better natural/synthetic fiber-reinforced polymer hybrid composite for commercial engineering applications. This research investigation intends to recognize the effect of laminate stacking sequence ofProsopis juliflorafibers (PJFs)/E-glass/carbon fabrics reinforced hybrid epoxy composites under five different composite designations. Manual hand layup method is used as the fabrication method, while studies on physical, mechanical, and morphological properties have been conducted in this research work. From the results obtained, it is obvious that the properties of PJFs/E-glass/carbon fabrics reinforced epoxy composites enhanced due to the hybridization with the addition of E-glass and carbon fabrics in PJFs and augments its suitability in the use of engineering structural applications.
机译:与合成纤维增强复合材料相比,目前的世界情景要求使用天然纤维增强聚合物复合材料,这主要是因为天然纤维增强聚合物复合材料具有环境友好的性能、丰富的可用性、成本效益以及轻质和中高强度的特性。除了上述优势,天然纤维的易于制造使得全球的研究人员开发了几种当地可用的天然纤维,以了解它们作为不同聚合物复合材料中增强相的可行性,以及它们在各种商业和工程应用中的适用性。本研究旨在发现一种更好的天然/合成纤维增强聚合物混杂复合材料,用于商业工程应用。本研究旨在确认五种不同的复合材料名称下,Prosopis juliflorafibers(PJFs)/E-玻璃纤维/碳纤维织物增强混杂环氧复合材料层压板堆叠顺序的影响。本研究采用手工铺层法制作,并对其物理、机械和形态特性进行了研究。从所得结果可以明显看出,PJFs/E-玻璃纤维/碳纤维织物增强环氧树脂复合材料的性能由于在PJFs中添加E-玻璃纤维和碳纤维织物而得到增强,并增强了其在工程结构应用中的适用性。

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