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Surface Roughness Optimization for Grinding Parameters of SKS3 Steel on Cylindrical Grinding Machine

机译:圆柱形磨床SKS3钢磨削参数的表面粗糙度优化

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Grinding is a machining method that could help to attain high precision grade and finest roughness grade. Due to such characteristics, grinding is often chosen as the final finishing method. The surface quality of a product depends on many factors including cutting depth, feed rate and rotation speed of the part. This paper will study the effect of these three machining parameters on the surface quality of SKS3 parts while machining on cylindrical grinding machines. Design of experiment using surface response model (RSM) will be applied to find the optimal machining parameters. Experimental design method Box-Behnken will be used to set up experimental runs. The input and output test data are processed by Minitab software to find the model of the regression equation before solving the optimization problem. The results of this study not only help to find the optimal grinding mode for SKS3 steel material, but it can also be extended to steels with similar properties and hardness.
机译:研磨是一种加工方法,可以有助于获得高精度等级和最好的粗糙度等级。由于这种特性,通常选择研磨作为最终的精加工方法。产品的表面质量取决于许多因素,包括切割深度,进料速率和旋转速度。本文将在圆柱形磨床加工时研究这三个加工参数对SKS3零件表面质量的影响。使用表面响应模型(RSM)的实验设计将应用于找到最佳加工参数。实验设计方法Box-Behnken将用于建立实验运行。在解决优化问题之前,Minitab软件处理输入和输出测试数据以找到回归方程的模型。这项研究的结果不仅有助于找到SKS3钢材的最佳研磨模式,而且还可以延伸到具有相似性质和硬度的钢。

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