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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Accurate 3-D cutting force prediction using cutting condition independent coefficients in end milling
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Accurate 3-D cutting force prediction using cutting condition independent coefficients in end milling

机译:使用立铣刀中与切削条件无关的系数进行精确的3-D切削力预测

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摘要

The instantaneous uncut chip thickness and specific cutting forces have a significant effect on predictions of cutting force. This paper presents a systematic method for determining the coefficients in a three-dimensional mechanistic cutting force model--the cutting force coefficients (two specific cutting forces, chip flow angle) and runout parameters. Some existing models have taken the approach that the cutting force coefficients vary as a function of cutting conditions or cutter rotation angle. This paper, however, considers that the coefficients are affected only by the uncut chip thickness. The instantaneous uncut chip thickness is estimated by following the movement of the position of the center of a cutter. To consider the size effect, the present method derives the relationship between the re-scaled uncut chip thickness and the normal specific cutting force, K{sub}n with respect to the cutter rotation angle, while the other two coefficients--frictional specific cutting force, K{sub}f and chip flow angle, θ{sub}c--remain constant. Subsequently, all the coefficients can be obtained, irrespective of cutting conditions. The proposed method was verified experimentally for a wide range of cutting conditions, and gave significantly better predictions of cutting forces.
机译:瞬时未切屑厚度和比切削力对切削力的预测有重要影响。本文介绍了一种用于确定三维机械切削力模型中系数的系统方法-切削力系数(两个特定切削力,切屑流角)和跳动参数。一些现有模型采用了这样的方法,即切削力系数根据切削条件或刀具旋转角度而变化。但是,本文认为系数仅受未切屑厚度的影响。通过跟随刀具中心位置的移动来估算瞬时未切削切屑厚度。为了考虑尺寸效应,本方法推导了重新缩放后的未切屑厚度与法向比切削力K {sub} n相对于刀具旋转角度之间的关系,而其他两个系数-摩擦比切削力K {sub} f和切屑流角θ{sub} c--保持恒定。随后,无论切削条件如何,都可以获得所有系数。所提出的方法在广泛的切削条件下进行了实验验证,并给出了更好的切削力预测。

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