Calculation of force parameters of workpiece machining process with end mill cutters

M. A. Lekveishvili, A. B. Lyukhter, N. N. Davydov
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Abstract

The aim is to develop and validate an operational methodology for calculating the force parameters and characteristics of the tool and the process of milling structural materials with end milling cutters. The structural schemes of machining and force models of oblique cutting processes in the modes of axial tool feed and continuous plastic deformation of the processed material were used when developing the method of preliminary calculation of the total axial force working on the cutting edge of end milling cutters. The rotating tool tests were conducted on a Hermle UWF 1202 H 3-axis machining center supplemented with a Kistler piezoelectric dynamometer (model 9272). Authors suggested, developed and tested the preliminary calculation method applied to the force characteristics of the machining process of workpieces by end milling cutters, considering how the energy power of ductile fracture of the machined material affects the process. Contact friction arising on the front and rear surfaces of the cutting tool does not reach the limiting value being subject to the Coulomb – Amonton law, that is, it is estimated by the dependence directly proportional to the normal pressure. After calculations, we defined the materials of the workpiece for milling, that is 45 steel (AISI 1045), and the end two-tooth cutter, uncoated T14K8 alloy, which was used to produce samples. The following milling modes were established: 4 mm boring depth; 50, 100 and 150 m/min cutting speeds; 0.05 and 0.1 mm/rev cutting tool feed. Deviation of the measured values of axial cutting force from the calculated values in the range of changing values of tool feed rate was found to be no more than 11%, and in the range of changing values of cutting speed no more than 15%. The developed calculation and analytical methodology for estimating force parameters of the machining process by end milling cutters provides an increase in the efficiency and reliability of the preliminary prognostic calculation of operating parameters and characteristics of cutting elements of end milling cutters.
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使用立铣刀加工工件过程中的力参数计算
目的是开发和验证计算力参数和刀具特征的操作方法,以及使用立铣刀铣削结构材料的过程。在制定初步计算立铣刀切削刃上总轴向力的方法时,使用了轴向刀具进给和被加工材料连续塑性变形模式下的加工结构方案和斜切过程力模型。旋转刀具测试在 Hermle UWF 1202 H 三轴加工中心上进行,并辅以 Kistler 压电测功机(型号 9272)。考虑到被加工材料韧性断裂的能量如何影响加工过程,作者建议、开发并测试了适用于立铣刀加工工件过程力特性的初步计算方法。切削刀具前后表面产生的接触摩擦力没有达到库仑-阿蒙顿定律的极限值,也就是说,它是通过与法向压力成正比的依赖关系来估算的。经过计算,我们确定了用于铣削的工件材料,即 45 钢(AISI 1045),以及用于生产样品的端部双齿刀具(无涂层 T14K8 合金)。确定的铣削模式如下:镗孔深度 4 毫米;切削速度分别为 50、100 和 150 米/分钟;切削刀具进给量分别为 0.05 和 0.1 毫米/转。在刀具进给量变化范围内,轴向切削力测量值与计算值的偏差不超过 11%,在切削速度变化范围内,轴向切削力测量值与计算值的偏差不超过 15%。所开发的立铣刀加工过程力参数估计计算和分析方法提高了立铣刀工作参数和切削元件特性初步预报计算的效率和可靠性。
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