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Comparison of central composite and orthogonal array designs for cutting force and surface roughness prediction modelling in turning

机译:用于切削力和车削表面粗糙度预测建模的中央复合材料和正交阵列设计的比较

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摘要

Development of empirical models in turning operation has been a major activity in metal cutting research. This paper presents an application of central composite face centred (CCF) and L_(18)(2~1 × 3~7) orthogonal array designs for developing cutting force and surface roughness models in case of turning AIS1 1015 steel with HSS tool. Three process parameters namely cutting speed, feed, depth of cut and three tool parameters namely side cutting edge angle, inclination angle, normal rake angle were considered in developing the cutting force and surface roughness models. Each parameter was set at three levels. Based on the experimental data, mathematical models in terms of process and tool parameters were developed using multiple linear regression. Finally, central composite and orthogonal array designs are compared with respect to effect analysis and empirical model building. Confirmation tests were performed to verify the predictability of the developed models.
机译:车削加工中经验模型的开发一直是金属切削研究的主要活动。本文介绍了中心复合面中心(CCF)和L_(18)(2〜1×3〜7)正交阵列设计在开发用HSS工具车削AIS1 1015钢时的切削力和表面粗糙度模型的应用。在开发切削力和表面粗糙度模型时,考虑了三个工艺参数,即切削速度,进给,切削深度和三个工具参数,即侧面切削刃角,倾斜角,法向前角。每个参数设置为三个级别。基于实验数据,使用多元线性回归开发了基于过程和工具参数的数学模型。最后,比较了中央复合材料和正交阵列设计的效果分析和经验模型构建。进行确认测试以验证开发模型的可预测性。

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