TIME MINIMIZATION OF POCKETING BY ZIGZAG PASSES ALONG STABILITY LIMIT

Ozoegwu, C. and Ezugwu, C. A and Ofochebe, S. (2016) TIME MINIMIZATION OF POCKETING BY ZIGZAG PASSES ALONG STABILITY LIMIT. The International Journal of Advanced Manufacturing Technology, 86. pp. 581-601.

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Abstract

Pocketing with zigzag toolpath (which maintains near to continuous tool-workiece contact) that are continuously optimized with limiting pairs of axial and radial depths is investigated in this work. Analysis led to a set of sixteen conditional expressions eligible for description of pocketing time. An eligible expression becomes effective when all associated conditions are simultaneously met while the rest of the eligible expressions remain dormant until dimensions of pocket and tool favours another. Similar analysis has been carried out in other works for one-way toolpath which permits idle return passes thus expected to incur delay. Comparison of zigzag and one-way toolpaths shows that the former always hastens pocketing operation because it better utilizes the stability limit of the system by maintaining continuously optimized to and fro passes. Numerical studies gives that zigzag toolpath can even half pocketing time of one-way toolpath for some choice of limiting process parameters. Similar to conclusion that has been drawn for one-way toolpath in an earlier work it is seen that utilizing the coordinate of maximum limiting material removal rate () for both down- and up-milling in a scheme of zigzag pocketing will not necessarily provide the minimum time because of geometrical constraints. Keywords; milling process; chatter; stability; full-discretization method; pocketing

Item Type: Article
Subjects: T Technology > T Technology (General)
Depositing User: Mr DIGITAL CONTENT CREATOR LMU
Date Deposited: 09 Oct 2019 13:02
Last Modified: 09 Oct 2019 13:02
URI: https://eprints.lmu.edu.ng/id/eprint/2511

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