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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >An Analytical Representation of Chip Area for Corner-Radiused Tools Under Both Depth-of-Cut and Feed Variations
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An Analytical Representation of Chip Area for Corner-Radiused Tools Under Both Depth-of-Cut and Feed Variations

机译:切削深度和进给变化两种情况下角部倒角刀具切屑面积的解析表示

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摘要

The operation of corner-radiused tools under both depth-of-cut and feed variation is a situation that occurs for many processes (e.g., straight turning, contour turning, boring, and face-milling) and under many practical conditions. A new chip-area expression is formulated by applying a rotational transformation to the chip-area geometry. Results obtained with this new representation are compared to an exact area computation algorithm based on geometric shapes. The new representation and its associated expressions are far more simple than those of the exact area representation. The errors introduced by the new representation have been analyzed and found to be very small. To increase the accuracy of the expressions for numerical applications, numerical and analytical errorcompensation functions have been developed. The latter makes the expressions exact, at the expense of increased algorithmic content, whereas the former is less algorithmic with negligible errors even under extreme conditions.
机译:在切削深度和进给量变化的情况下,圆角半径刀具的操作在许多过程(例如,直车削,轮廓车削,镗削和端面铣削)中以及在许多实际条件下都会发生。通过将旋转变换应用于芯片区域几何图形,可以制定新的芯片区域表达式。将使用这种新表示形式获得的结果与基于几何形状的精确面积计算算法进行比较。新的表示形式及其关联的表达式比确切的区域表示形式要简单得多。新表示形式引入的错误已经过分析,发现非常小。为了提高数值应用表达式的准确性,已经开发了数值和分析误差补偿功能。后者使表达式精确,但以增加算法内容为代价,而即使在极端条件下,前者算法也较少,误差可忽略。

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