Advances in Mechanical Engineering (Jan 2013)

An Efficient Approach for Identifying Stable Lobes with Discretization Method

  • Baohai Wu,
  • Ming Luo,
  • Dinghua Zhang

DOI
https://doi.org/10.1155/2013/682684
Journal volume & issue
Vol. 5

Abstract

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This paper presents a new approach for quick identification of chatter stability lobes with discretization method. Firstly, three different kinds of stability regions are defined: absolute stable region, valid region, and invalid region. Secondly, while identifying the chatter stability lobes, three different regions within the chatter stability lobes are identified with relatively large time intervals. Thirdly, stability boundary within the valid regions is finely calculated to get exact chatter stability lobes. The proposed method only needs to test a small portion of spindle speed and cutting depth set; about 89% computation time is savedcompared with full discretization method. It spends only about10 minutes to get exact chatter stability lobes. Since, based on discretization method, the proposed method can be used for different immersion cutting including low immersion cutting process, the proposed method can be directly implemented in the workshop to promote machining parameters selection efficiency.