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首页> 外文期刊>Fibers and Polymers >Optimization of drilling delamination behavior of GFRP/clay nano-composites using RSM and GRA methods
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Optimization of drilling delamination behavior of GFRP/clay nano-composites using RSM and GRA methods

机译:使用RSM和GRA方法优化GFRP /粘土纳米复合材料的钻孔分层行为

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摘要

The effects of Nano-clay content on delamination factor during drilling operation on fiber-reinforced composites are optimized through Response Surface Methodology (RSM). Drilling is one of the basic operations on assembly section in many industries. In present work, the experiments are conducted by Box-Behnken Design (BBD) by RSM techniques, which is used to study influential factor on drilling process parameters such as cutting speed, feed rate, size of drill and Nano-clay. The analysis of variance (ANOVA) techniques are employed to evaluation of impact of process parameters on delamination. Developed regression models analyze the interaction properties of process parameters. In addition, the Gray Relational Analysis (GRA) is used to identify the best level of factors for both responses (Entry and Exit condition) to make quality of hole on composites. The experimental result shows that, the feed rate is the most significant factor among the other parameters. The delamination factor is decreased with addition of Nano-clay content at a certain percentile. Furthermore, of Nano-clay content, delamination factor may be increased. The proper propagation of filler content produces a high bonding between the fiber and matrix materials. Hence, the delamination factor may be decreased.
机译:通过响应表面方法(RSM)优化纳米粘土含量对钻孔操作期间的分层因子的影响。钻井是许多行业组装部分的基本操作之一。在目前的工作中,通过RSM技术通过Box-Behnken设计(BBD)进行实验,用于研究钻探过程参数的影响因素,如切割速度,进料速率,钻头和纳米粘土。方差分析(ANOVA)技术用于评估过程参数对分层的影响。开发的回归模型分析过程参数的交互性质。此外,灰色关系分析(GRA)用于识别响应(进入和退出条件)的最佳因素水平,以使复合材料上的孔质量。实验结果表明,进料速率是其他参数中最重要的因素。在一定百分位数下加入纳米粘土含量降低分层因子。此外,纳米粘土含量,可以增加分层因子。填充物含量的适当繁殖在纤维和基质材料之间产生高键合。因此,可以减少分层因子。

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