Box-Behnken optimization of pin-on-disc wear test process parameters

B. Aliemeke, H. A. Okwudibe, A. I. Omoakhalen, P. Major
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Abstract

The Full factorial and Box-Behnken Designs for determination of optimal values of wear rate using pin –on-disc wear test parameters  have been successfully carried out. The parameters used are track diameter of the disc, mass difference of specimen before and after the  test and speed of the disc. The mathematical model developed for the “smaller-the-better” wear rate response by the Full factorial  and Box-Behnken Design methods were adjudged adequate with a pvalue of 0.025 and 0.046 respectively. Also, the adjusted R2 values of  the Factorial and Box-Behnken Designs were determined to be 0.89 and 0.69 respectively. The statistical ANOVA analysis carried out on  the Box-Behnken Design showed that the track diameter and the mass difference were significant with a p-value of 0.041 and 0.007  respectively. Contour plots and response surface plot developed for the factorial method and the Box-Behnken Design displayed  appreciable level of similarity. It was noticed that a reduction of wear was occasioned by an increase in track diameter and speed of the  disc. 
盒式贝肯(Box-Behnken)优化针盘磨损测试工艺参数
利用销盘磨损试验参数确定磨损率最佳值的全因子设计和盒式贝肯设计已成功实施。使用的参数包括圆盘的轨道直径、试验前后试样的质量差和圆盘的速度。通过全因子设计法和箱-贝肯设计法建立的 "越小越好 "磨损率响应数学模型被认为是适当的,p 值分别为 0.025 和 0.046。此外,阶乘设计和箱式贝肯设计的调整 R2 值分别为 0.89 和 0.69。对箱式贝肯设计进行的统计方差分析显示,轨道直径和质量差异显著,P 值分别为 0.041 和 0.007。为因子法和箱式贝肯设计绘制的等高线图和响应面图显示出明显的相似性。我们注意到,圆盘轨道直径和速度的增加导致了磨损的减少。
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来源期刊
CiteScore
0.10
自引率
0.00%
发文量
126
审稿时长
11 weeks
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