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Mechanical and Abrasive Wear Behaviour of Waste Silk Fiber Reinforced Epoxy Biocomposites Using Taguchi Method

机译:废丝纤维增强环氧生物复合材料的机械和磨料磨损行为使用TAGUCHI方法

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The aim of this research article is to study the static mechanical properties and abrasive wear behavior of epoxy biocomposites reinforced with different weight percentage of waste silk fibers. The effect of parameters such as velocity (A), load (B), fiber loading (C) and abrading distance (D) on abrasive wear has been considered using Taguchi's L25 orthogonal array. The objective is to examine parameters which significantly affect the abrasive wear of biocomposites. The addition of silk fiber has resulted in improved flexural properties of the epoxy matrix. The results of ANOVA indicated that the parameter which played a significant role was abrading distance followed by fiber loading, load and sliding velocity.
机译:本研究制品的目的是研究环氧生物复合材料的静态力学性能和磨料磨损行为,其加强了不同重量百分比的废丝纤维。 使用Taguchi的L25正交阵列已经考虑了诸如速度(a),载荷(a),载荷(b),纤维加载(c)和研磨距离(d)的参数的效果。 目的是检查显着影响生物复合材料磨料的参数。 添加丝纤维导致环氧基质的弯曲性能提高。 ANOVA的结果表明,发挥了重要作用的参数是磨损距离,然后是纤维负载,负荷和滑动速度。

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