玄武岩纤维和黄麻纤维增强混杂复合材料的制备与研究

V. Sivaprasad, M. Anusha, Y. S. Reddy, V. Venugopal, Sriram Vishwanath, M. Selvam
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引用次数: 0

摘要

复合材料是通过仔细组合两种或两种以上的成分来获得有益的结果。由两种或两种以上物理上不同的相组成的物质体系,当它们结合在一起时,产生不同于它们各自组成部分的总体特性纤维的功能是赋予产品强度,将细丝结合在一起形成基质,并保护纤维免受元素的影响。在重量比上,复合材料是一类比任何其他传统工程材料更坚固、更刚性的材料。我们在日常生活中使用。进一步减轻重量的其他非常有趣的选择包括改变组件中纤维和树脂的体积比例,并沿负载方向调整纤维的方向。为了制备混合天然纤维复合材料,目前的实验研究旨在。各种黄麻、玄武岩和聚酯混合天然纤维的样品将利用手工铺层工艺制作,其中纤维基质的重量分数是不同的百分比,层的堆叠是交替的。复合材料的孔隙率随纤维载荷和纤维长度的增加而增加。就纤维载荷的影响而言,纤维载荷为25wt%的复合材料显示出更好的硬度值。拉伸强度在25%后降低,因此拉伸模量适用于纤维加载的平均重量百分比,或25wt%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication and Investigation on Basalt Fiber and Jute Fiber Reinforced Hybrid Composites
Composite materials are created by carefully combining two or more components to get a beneficial result. a system of materials made up of two or more physically distinct phases that, when combined, create aggregate properties that are distinct from those of their individual components. The fibre’s function is to give the product strength, bind the filaments together into a matrix, and shield the fibres from the elements. On a weight-to-weight ratio, composites are a class of materials that are stronger and more rigid than any other traditional engineering material. We employ in daily life. Other extremely intriguing options for further weight reduction include altering the volume proportion of fibre and resin in the component and aligning the orientation of the fibre along the direction of load. To create the hybrid natural fibre composites, the current experimental investigation intends to. Samples of a variety of jute, basalt, and polyester hybrid natural fibres will be created utilising the hand layup process, where the weight fraction of the fibre matrix is at various percentages and the stacking of the plies is alternated. Composites' void content rises as both the fibre loading and the fibre length increase. Composites with a 25wt% fibre loading demonstrate a better hardness value as far as the influence of fibre loading is concerned. Tensile strength diminishes after 25%, hence tensile modulus is appropriate for average weight percentage of fibre loading, or 25wt%.
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