首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Surface roughness (R_a) prediction model for turning of AISI 1019 steel using response surface methodology and Box-Cox transformation
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Surface roughness (R_a) prediction model for turning of AISI 1019 steel using response surface methodology and Box-Cox transformation

机译:响应面法和Box-Cox变换用于AISI 1019钢车削的表面粗糙度(R_a)预测模型

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摘要

In this present work, an attempt has been made to develop a more accurate surface roughness prediction model using response surface methodology based on center composite rotatable design with Box-Cox transformation in turning of AISI 1019 steel. The analysis has been carried out in three stages. In the first stage, a quadratic model has been developed in terms of feed, speed, depth of cut and nose radius. In the second stage, an improved prediction model has been developed by improving the normality, linearity and homogeneity of the data using a Box-Cox transformation. This improved model has been found to yield good prediction accuracy when compared to the previous one. In the third stage, confirmation experiments have been carried out, which clearly show that the Box-Cox transformation has a strong potential to improve the prediction capability of empirical models. An attempt has also been made to investigate the influence of cutting parameters on surface roughness. The result shows that the feed is the main influencing factor on the surface roughness while the depth of cut has no significant influence.
机译:在本工作中,已尝试使用响应表面方法基于AISI 1019钢车削中具有Box-Cox变换的中心复合旋转设计和响应面方法来开发更准确的表面粗糙度预测模型。分析已分三个阶段进行。在第一阶段,已经在进给,速度,切削深度和刀尖半径方面开发了二次模型。在第二阶段,通过使用Box-Cox变换改善数据的正态性,线性和同质性,开发了一种改进的预测模型。与前一个模型相比,已发现这种改进的模型具有良好的预测精度。在第三阶段,已经进行了确认实验,这清楚地表明Box-Cox变换具有很大的潜力来提高经验模型的预测能力。还尝试研究切削参数对表面粗糙度的影响。结果表明,进给是影响表面粗糙度的主要因素,而切削深度则无明显影响。

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