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Machinability Evaluation in Hard Milling of AISI D2 Steel

机译:AISI D2钢的硬铣削加工性评估

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Milling of hardened steel components provides considerable benefits in terms of reduced manufacturing cost and time compared to traditional machining. Temperature variation in milling is an important factor affecting the wear of cutting tools. The poor selection of milling parameters may cause excessive tool wear and increased work surface roughness. Hence, there is a need to study the machinability aspects during milling of hardened steel components. In the present work, influence of cutting speed, feed rate and radial depth of cut on milling temperature, surface roughness and cutting force during milling of AISI D2 steel has been investigated using response surface methodology (RSM) based models. From the parametric analysis, it is revealed that temperature increases linearly, whereas surface roughness increases non-linearly with cutting speed. However, for higher values of feed rate, an increased cutting speed considerably reduces the cutting force for specified depth of cut range. The present work also reveals that the selection of best cutting conditions is useful at the CAPP stage in the milling process particularly with tight tolerances.
机译:与传统机加工相比,铣削淬硬的钢部件在降低制造成本和时间方面提供了可观的好处。铣削中的温度变化是影响切削工具磨损的重要因素。铣削参数选择不当可能会导致刀具过度磨损并增加工作表面粗糙度。因此,有必要研究硬化钢构件的铣削过程中的可切削性方面。在当前工作中,已使用基于响应表面方法(RSM)的模型研究了切削速度,进给速度和切削深度对AISI D2钢铣削温度,表面粗糙度和切削力的影响。从参数分析可以看出,温度随着切削速度线性增加,而表面粗糙度随切削速度非线性增加。但是,对于更高的进给速度值,提高的切削速度会大大降低指定切削深度范围内的切削力。目前的工作还表明,在铣削过程中的CAPP阶段,特别是在公差很小的情况下,选择最佳切削条件是有用的。

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