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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Modeling and experimental validation for surface error caused by axial cutting force in end-milling process
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Modeling and experimental validation for surface error caused by axial cutting force in end-milling process

机译:轴向切削力轴向切割过程轴承误差的建模与实验验证

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摘要

The high-speed milling is now the primary machining method of the thin-walled structures. Study on the surface error caused by part deflection has been comparatively mature, yet the deformation mode of the workpiece remains incomplete. This paper studies the milling error caused by the axial cutting force. On the basis of deflection function of the rectangular cantilever plate, a method is proposed to predict the deflection and surface error of the thin-walled part. There is an interplay of cutting force and surface error after machining. As the work suggests, workpiece will be warping under the axial cutting force. And the deformation increased with the increase of cutting depth and the decrease of the spindle speed.
机译:高速铣削现在是薄壁结构的主要加工方法。 由零件偏转引起的表面误差的研究已经相对成熟,但工件的变形模式仍然不完整。 本文研究了轴向切削力引起的铣削误差。 基于矩形悬臂板的偏转功能,提出了一种方法来预测薄壁部分的偏转和表面误差。 加工后,有切割力和表面误差的相互作用。 随着工作所建议的,工件将在轴向切割力下翘曲。 随着切削深度的增加和主轴速度的降低,变形增加。

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