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Studying the effect of reinforcement parameters on the mechanical properties of natural fibre-woven composites by Taguchi method

机译:用TAGUCHI方法研究增强参数对天然纤维复合材料力学性能的影响

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摘要

Process optimization is the key task of any engineering application to maximize the desirable output by optimizing the range of process parameters. In this research work, jute composites were fabricated by the hand lay-up method with the aim of optimizing the process parameter such as yarn linear density, fabric areal density and fabric laying angle on the mechanical properties of the textile composite structures using the Taguchi L9 orthogonal matrix. The plain-woven and twill-woven fabrics of Jute fabrics were produced through specialized handloom machine and used as preform for composite production. Epoxy resin was used as the matrix component. Signal-to-noise ratio ratio, analysis of variance and experimental verification of results were analysed. The results showed that fabric laying angle played major role to achieve high mechanical properties of composites and twill-woven structural reinforcement yields higher mechanical properties. Subsequent to this optimal process, parameters have been arrived for all the composites, and finally it was verified through the experimental results.
机译:过程优化是通过优化工艺参数范围来最大化所需输出的任何工程应用的关键任务。在该研究工作中,用手铺设方法制造了黄麻复合材料,目的是使用Taguchi L9优化纱线线性密度,织物面密度和织物铺设角度的工艺参数,织物面积密度和织物铺设角度。正交矩阵。通过专门的Handroom机生产瓦扣织物的仿形和斜纹织物,用作复合生产的预制件。环氧树脂用作基质组分。分析了信噪比比,分析了方差分析和结果的实验​​验证。结果表明,织物铺设角度在复合材料的高机械性能下发挥了重要作用,斜纹织物结构增强产生了更高的机械性能。在此最佳过程之后,已到达所有复合材料的参数,最后通过实验结果验证。

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