Features of Peripheral End milling: Formation of Machined Surface Profile

S. Dyadya, Ye. B Kozlova, A. Germashev, A. Leschenko, E. Kondratyuk
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Abstract

The profile of the machined surface at the peripheral end milling is made when various types of fluctuations occur. At milling under self-exited oscillations, the machined surface, in addition to traces from cutting in with each tooth, has a wavy profile. The purpose of the article is to consider the peculiarities of the mechanism for making the profile of the machined surface under up and down peripheral end milling in case of chatter appearance. The experiments have been carried out on a special bench, using a technique that allows estimating the law of the vibrational motion of a part in the milling process by recording oscillograms of part fluctuation. The profile of the machined surface was evaluated by strip chart recording. The basic fragments of the oscillograms were used to determine the values of the parameters, which made it possible to establish the relationship between the waviness on the machined surface and the oscillatory movements of the part during milling with different feed directions. On the basis of the conducted experimental research, the mechanisms of surface finish formation during the up and down peripheral end milling in the third velocity zone have been determined. The height of the waviness during the cut-up milling with self-exited oscillations is formed by cavities, the depth of which is determined by the deviation of the part from the elastic equilibrium line on the first wave of auto-oscillations. The number of cuts determines the waviness stroke. At the cut-down milling, shaping cavities are formed by the part deviation from the elastic equilibrium line when the tool leaves the cutting zone. The waviness stroke on the machined surface depends on the change in the length of the cutting surface. Keywords—profile; number of cuts; oscillogram; the vibrational motion, waviness; profilogram
外周立铣削的特点:加工表面轮廓的形成
当发生各种类型的波动时,在外端面铣削时加工表面的轮廓就形成了。在自激振荡下铣削时,除了每个齿的切削痕迹外,加工表面还具有波浪形轮廓。本文的目的是考虑在出现颤振的情况下,上下外周立铣削加工表面轮廓的机构的特点。实验是在一个特殊的实验台上进行的,采用了一种技术,可以通过记录零件波动的示波器来估计零件在铣削过程中的振动运动规律。采用条形图记录法对加工表面轮廓进行评价。利用示波图的基本片段来确定参数值,从而可以建立不同进给方向铣削过程中加工表面的波纹度与零件振荡运动之间的关系。在已进行的实验研究的基础上,确定了第三速度区上下端铣削表面光洁度的形成机理。自激振荡切割铣削时波纹的高度由空腔形成,空腔的深度由工件在自激振荡第一波上与弹性平衡线的偏差决定。切割的数量决定了波浪状笔画。在切削铣削过程中,刀具离开切削区时零件偏离弹性平衡线形成成形腔。被加工表面上的波纹行程取决于切割表面长度的变化。Keywords-profile;切割次数;波形图;振动运动,波浪形;轮廓图
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