Hole quality and cutting time evaluation in the interpolated helical milling

D. Costa, A. Marques, F. Amorim
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引用次数: 9

Abstract

The interpolated helical milling (IHM) is considered a very flexible strategy which allows milling, instead of drilling, holes with more generic tools. However, despite of its dissemination in industry, it is currently known that few research works have been carried out about the influence of cutting condition on the quality of holes and their cutting time. In this study, the production of holes was investigated using the IHM technique for rough and finish machining conditions, and the process performance was evaluated by the cutting time, and the holes surface roughness and roundness. Fifty four holes were milled in AISI 1045 steel bars with end mill cutters in a vertical machining centre; following Taguchi (L9) experiments where the cutting speed, circular feed per tooth and axial feed per tooth were analysed for rough operations, and for the finish operations, the radial depth of cut was also investigated. From the results, it can be concluded that high quality surface can be achieved at the rough phase. In this case, the combination of lower axial feed rates (ƒz) and higher cutting speed (Vc) should be selected to guarantee a higher hole quality, without compromising the productivity. [Received 13 April 2015; Revised 06 August 2015; Accepted 06 September 2015]
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内插螺旋铣削孔质量及切削时间评价
内插螺旋铣削(IHM)被认为是一种非常灵活的策略,它允许使用更通用的工具铣削而不是钻孔。然而,尽管它在工业上得到了广泛的应用,但目前很少有关于切削条件对孔质量和切削时间影响的研究工作。在本研究中,采用IHM技术对孔的粗加工和精加工条件进行了研究,并通过切削时间、孔表面粗糙度和圆度来评价工艺性能。在立式加工中心用立铣刀对AISI 1045型钢进行了54个孔的铣削加工;在Taguchi (L9)实验中,对粗加工的切削速度、每齿圆进给量和每齿轴进给量进行了分析,并对精加工的径向切削深度进行了研究。结果表明,在粗糙阶段可以获得高质量的表面。在这种情况下,应选择较低的轴向进给速率(ƒz)和较高的切削速度(Vc)相结合,以保证更高的孔质量,同时不影响生产率。[2015年4月13日收到;2015年8月6日修订;接受2015年9月6日]
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