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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Prediction of cutting forces in end milling of pockets
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Prediction of cutting forces in end milling of pockets

机译:铣削型腔的切削力的预测

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摘要

In end milling of pockets, variable radial depth of cut is generally encountered as the end mill enters and exits the corner, which has a significant influence on the cutting forces and further affects the contour accuracy of the milled pockets. This paper proposes an approach for predicting the cutting forces in end milling of pockets. A mathematical model is presented to describe the geometric relationship between an end mill and the corner profile. The milling process of corners is discretized into a series of steady-state cutting processes, each with different radial depth of cut determined by the instantaneous position of the end mill relative to the workpiece. For the cutting force prediction, an analytical model of cutting forces for the steady-state machining conditions is introduced for each segmented process with given radial depth of cut. The predicted cutting forces can be calculated in terms of tool/workpiece geometry, cutting parameters and workpiece material properties, as well as the relative position of the tool to workpiece. Experiments of pocket milling are conducted for the verification of the proposed method.
机译:在型腔的端铣削中,通常在端铣刀进入和离开拐角时会遇到可变的径向切削深度,这对切削力有很大影响,并进一步影响铣削型腔的轮廓精度。本文提出了一种用于预测型腔端面铣削中切削力的方法。提出了一个数学模型来描述立铣刀和拐角轮廓之间的几何关系。角的铣削过程被离散为一系列的稳态切削过程,每个切削过程具有不同的径向切削深度,这取决于端铣刀相对于工件的瞬时位置。对于切削力的预测,针对给定径向切削深度的每个分段过程,引入了稳态加工条件下切削力的解析模型。可以根据刀具/工件的几何形状,切削参数和工件材料属性以及刀具与工件的相对位置来计算预测的切削力。进行了袋装铣削实验以验证所提出的方法。

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