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Evaluation of Surface Roughness and Power Consumption in Machining FCD 450 Cast Iron using Coated and Uncoated Irregular Milling Tools

机译:使用有涂层和无涂层不规则铣削工具加工FCD 450铸铁的表面粗糙度和功耗的评估

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摘要

In this project, the effects of different cutting parameters on surface roughness and power consumption when machining FCD450 cast iron were studied using coated and uncoated irregular milling tool geometry of variable helix and pitch. Their responses on roughness and power consumption were evaluated based on the spindle speed, feed rate, and depth of cut, machining length and machining time. Results showed that except spindle speed and machining length, other parameters such as feed rate, axial and radial depth of cut and also machining time proportionate with surface roughness. The power consumption proportionately increase for all cutting parameters except feedrate. It is showed that the average decrement 27.92 percent for surface roughness and average decrement 9.32 percent for power consumption by using coated compared to uncoated tool. Optimum cutting parameters for both minimum surface roughness and power consumption can be determined. The coated tools performed better than uncoated milling tools for responses of surface roughness and power consumption to increase machining productivity and profit.
机译:在该项目中,使用可变螺旋和螺距的有涂层和无涂层不规则铣刀几何形状,研究了切削FCD450铸铁时不同切削参数对表面粗糙度和功耗的影响。根据主轴转速,进给速度和切削深度,加工长度和加工时间,评估了它们对粗糙度和功耗的响应。结果表明,除主轴转速和加工长度外,其他参数(例如进给速度,轴向和径向切削深度以及加工时间)与表面粗糙度成正比。除进给速度外,所有切削参数的功耗均成比例增加。结果表明,与未涂层工具相比,使用涂层工具的表面粗糙度平均降低27.92%,功耗平均降低9.32%。可以确定用于最小表面粗糙度和功耗的最佳切削参数。涂层工具在表面粗糙度和功耗方面的响应优于未涂层的铣削工具,从而提高了加工效率和利润。

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