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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Stability prediction of milling process with variable pitch and variable helix cutters
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Stability prediction of milling process with variable pitch and variable helix cutters

机译:变螺距和可变螺旋铣刀铣削过程的稳定性预测

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摘要

The use of variable pitch or helix cutters is a known means to prevent chatter vibration during milling. In this article, an alternative method based on an improved semi-discretization method is proposed to predict the stability of variable pitch or variable helix milling. In order to consider the effect of distributed system delays attributed to helix variation, the average delays were calculated for each flute after the engaged cutting flutes were divided into a finite number of axial elements. Meanwhile, a straightforward integral force model, which can consider the piecewise continuous regions of the cutting that describe the helix angle is used to determine the cutting force. Through comparisons with prior works, time-domain simulations, and cutting tests, the proposed approach was verified. In addition, the method was applied to examine the effect of tool geometries on stability trends. Several phenomena for certain combinations of pitch and helix angles are shown and explained.
机译:使用可变螺距或螺旋铣刀是防止铣削期间颤动振动的已知方法。在本文中,提出了一种基于改进的半离散化方法的替代方法来预测变螺距或可变螺旋铣削的稳定性。为了考虑归因于螺旋线变化的分布式系统延迟的影响,在将啮合的切削刃切成有限数量的轴向元素之后,计算每个刃的平均延迟。同时,可以考虑描述螺旋角的切削的分段连续区域的直接积分力模型用于确定切削力。通过与以前的工作进行比较,时域仿真和切削测试,验证了所提出的方法。此外,该方法还用于检查刀具几何形状对稳定性趋势的影响。示出并说明了螺距和螺旋角的某些组合的几种现象。

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