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THE BEST AND WORST FEED DIRECTIONS IN MILLING CHATTER

机译:铣刨机最佳和最差进料方向

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In this paper, a 2D milling stability analysis is reduced to a 1D problem by performing a modal analysis on an oriented transfer function matrix under a given feed direction. The oriented frequency response function (FRF) of the oriented transfer matrix are obtained as explicit functions of the radial immersion and feed direction. At different feed directions in most of the lower immersion range, the process is demonstrated to be the least stable when the modal direction of the directional matrix is oriented at 45° and 225° and in the -45° and 135°, yielding a local minimum critical depth of cut, regardless of up or down cuts. At higher immersion, the worst critical depth of cut is dominated by the lower frequency mode, and becomes a constant, independent of the feed direction at full cut. When the modal direction is oriented along the x or y axes, the process has a local maximum critical depth of cut.
机译:在本文中,通过在给定的进给方向上对定向传递函数矩阵进行模态分析,将二维铣削稳定性分析简化为一维问题。获得定向传输矩阵的定向频率响应函数(FRF)作为径向浸入和馈送方向的显式函数。在大多数较低的浸入范围内,在不同的进料方向上,当定向矩阵的模态方向分别定向为45°和225°以及-45°和135°时,该过程被证明是最不稳定的。最小临界切割深度,无论向上还是向下切割。在较高的浸入度下,最差的临界切削深度由低频模式决定,并且变为恒定值,与全切削时的进给方向无关。当模态方向沿x或y轴定向时,该过程将具有局部最大临界切削深度。

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