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首页> 外文期刊>Indian journal of engineering and materials sciences >Optimization of machining parameters in drilling hemp fiber reinforced composites to maximize the tensile strength using design experiments
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Optimization of machining parameters in drilling hemp fiber reinforced composites to maximize the tensile strength using design experiments

机译:使用设计实验优化钻麻纤维增强复合材料的加工参数以最大化拉伸强度

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摘要

Natural fiber composites today are replacing synthetic fiber composites due to superior properties of natural fibers such as low density, high specific strength and modulus, relative nonabrasiveness, ease of fiber surface modification and wide availability. Drilling is often required to facilitate the assembly of the parts to get the final product. However, drilling composite materials present a number of problems such as delamination associated with the characteristics of the material and with the used cutting parameters. The present investigation is an attempt to study the factors and combination of factors that influence the delamination and the tensile strength of the drilled unidirectional hemp fiber reinforced composites using Taguchi and ANOVA analysis and to achieve the conditions for minimum delamination and for maximum tensile strength. The result shows that the feed rate and cutting speed are seen to make the largest contribution to the delamination and tensile strength. Confirmation experiments are conducted to verify the predicted optimal parameters with the experimental results.
机译:由于天然纤维的优越性能,例如低密度,高比强度和模量,相对不磨蚀性,易于纤维表面改性和广泛的可用性,当今的天然纤维复合材料正在替代合成纤维复合材料。通常需要进行钻孔以利于零件的组装以获得最终产品。但是,钻复合材料存在许多问题,例如与材料特性和所用切削参数有关的分层。本研究旨在尝试使用Taguchi和ANOVA分析研究影响钻孔单向大麻纤维增强复合材料的分层和拉伸强度的因素和因素组合,并实现最小分层和最大拉伸强度的条件。结果表明,进给速度和切削速度对脱层和拉伸强度的影响最大。进行确认实验以用实验结果验证预测的最佳参数。

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