Article ID Journal Published Year Pages File Type
288690 Journal of Sound and Vibration 2012 22 Pages PDF
Abstract

In this paper, internal resonance and nonlinear dynamics of regenerative chatter in milling process is investigated. An extended dynamic model of the peripheral milling process including both structural and cutting force nonlinearities is presented. Closed form expressions for the nonlinear cutting forces are derived through their Fourier series components. In the presence of the large vibration amplitudes, the loss of contact effect is included in this model. Using the multiple-scales approach, analytical approximate response of the delayed nonlinear system is obtained. Considering the internal resonance dynamics (i.e. mode coupling), the energy transfer between the coupled x–y modes is studied. The results show that during regenerative chatter under specific cutting conditions, one mode can decay. Furthermore, it is possible to adjust the rate at which the x-mode (or y-mode) decays by implementation of the internal resonance. Therefore, under both internal resonance and regenerative chatter conditions, it is possible to suppress the undesirable vibration of one mode (direction) in which accurate surface finish is required. Under the steady-state motion, jump phenomenon is investigated for the process with regenerative chatter under various cutting conditions. Moreover, the effects of structural and cutting force nonlinearities on the stability lobes diagram of the process are investigated.

► Analysis of milling process including structural and cutting force nonlinearities. ► Investigation of nonlinear dynamics of regenerative chatter and internal resonance. ► Study of the jump phenomenon and energy transfer between coupled modes. ► Adjusting the rate at which a specific mode decays by using the internal resonance. ► Effects of structural and cutting force nonlinearities on the stability lobes diagram.

Related Topics
Physical Sciences and Engineering Engineering Civil and Structural Engineering
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