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Tribological behavior of ABS/TiO2 polymer composite using Taguchi statistical analysis

机译:ABS / TiO2聚合物复合材料的摩擦学行为使用TAGUCHI统计分析

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The friction and wear properties of acrylonitrile-butadiene-styrene (ABS) filled with micro-meter sized titanium di-oxide (TiO2) composites are investigated for varying filler content, normal load and sliding speed with three levels of each parameter. The experiments are conducted on multi-tribotester (block-on-roller configuration) using L27 orthogonal array (OA) design of experiments. Taguchi based statistical analysis is performed for coefficient of friction (COF) and specific wear rate to find optimal condition for the process. The optimal combination of parameter for COF is found at 10 wt% filler content, 35 N normal load and speed of 120 rpm and for specific wear rate it is found at 15 wt% filler content, 35 N load and 120 rpm speed. From analysis of variance (ANOVA) it is seen that filler content has the significant effect on COF followed by normal load and for specific wear rate, normal load has the significant effect followed by sliding speed. Further, scanning electron microscopy (SEM) images for worn surfaces of polymer composite are investigated to support the optimized result. Finally, a confirmation test is also carried out to validate the optimized results and found it is increased about 16% and 2,76% from initial to optimum conditions for friction coefficient and wear rate, respectively.
机译:填充有微米尺寸的钛偶氮二氧化钛(TiO2)复合材料的丙烯腈 - 丁二烯 - 苯乙烯(ABS)的摩擦和磨损性能被研究,以改变填料含量,正常载荷和具有三个级别的每个参数的滑动速度。使用实验的L27正交阵列(OA)设计,在多层骨杆菌(滚子配置)上进行实验。基于摩擦系数(COF)和特定磨损率的基于Taguchi的统计分析,以找到该过程的最佳条件。 COF参数的最佳组合在10wt%填料含量,35升正常负荷和120rpm的速度下,并且对于特定的耐磨速率,它被发现为15wt%填料含量,35 n负载和120rpm速度。根据方差分析(ANOVA),可以看出,填料含量对COF具有显着影响,然后是正常负载,并且对于特定的磨损率,正常负载具有显着的效果,然后滑动速度。此外,研究了用于磨损聚合物复合物表面的扫描电子显微镜(SEM)图像以支持优化的结果。最后,还进行了确认测试以验证优化的结果,发现其分别从初始到摩擦系数和磨损率的最佳条件增加约16%和2,76%。

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