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首页> 外文期刊>Journal of the Institution of Engineers (India), Series D. Metallurgical & Materials Engineering.Mining Engineering >Evaluation of the Wear Behaviour of Thermally Aged E Glass Reinforced Epoxy Composite Filled with Wollastonite Using Taguchi L27 Technique
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Evaluation of the Wear Behaviour of Thermally Aged E Glass Reinforced Epoxy Composite Filled with Wollastonite Using Taguchi L27 Technique

机译:采用田口L27技术对铝灰石填充热老化E玻璃增强环氧树脂复合材料的磨损性能评估

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Abstract In the present study, the E glass reinforced epoxy composite filled with wollastonite was developed. Taguchi’s L27 technique was selected for developing and analysing the effects of control factors on the wear behaviour of composites. The control factors considered for the present study was filler (), time (minute) and temperature (°Celsius). The wear experiments were carried out using pin on disc arrangements for different experimental conditions. After the wear test, the microstructural analysis was carried out on the specimens using scanning electron microscope (SEM) analysis. The regression coefficient of 98.8 and probability plot shows that the model was accurate and valid. From the optimization results, it was clear that the 7 filler percentage (high level), 5?min sliding time (low level) and 50?°C temperature (high level) will yield high wear resistance and lower material loss due to the wear of the composites. Further, a confirmation test with the optimized condition was conducted and validated using the SEM image. The results also showed that the Taguchi technique effectively studies the effects of the control factors for obtaining the maximum wear resistance of the composites.
机译:摘要 本研究开发了硅灰石填充E玻璃增强环氧树脂复合材料。田口的L27技术被选中用于开发和分析控制因素对复合材料磨损行为的影响。本研究考虑的控制因素是填料(%)、时间(分钟)和温度(°C)。在不同的实验条件下,使用销钉在圆盘上的布置进行磨损实验。磨损试验后,采用扫描电子显微镜(SEM)对试样进行微观结构分析。回归系数为98.8%和概率图表明,该模型准确有效。从优化结果中可以清楚地看出,7%的填料百分比(高水平)、5?min的滑动时间(低水平)和50°C的温度(高水平)将产生高耐磨性,并降低由于复合材料磨损而造成的材料损失。此外,使用SEM图像进行了优化条件的确认测试并进行了验证。结果还表明,田口技术有效地研究了控制因素对获得复合材料最大耐磨性的影响。

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