Robust design of flank milling parameters based on grey-Taguchi method
Kopač, Janez (Author), Krajnik, Peter (Author)

URLURL - Presentation file, Visit http://dx.doi.org/10.1016/j.jmatprotec.2007.03.051 This link opens in a new window

The robust design of flank milling parameters is dealing with the optimization of the cutting loads, milled surface roughness and the material removal rate (MRR) in the machining of an Al-alloy casting plate for injection moulds. The considered flank milling parameters include the coolant employment, number of end mill flutes, cutting speed, feed per tooth, axial depth of cut, and radial depth of cut. Grey-Taguchi method is combining the orthogonal array (OA) design of experiments (DOE) with grey-relational analysis (GRA), which enables the determination of the optimal combination of flank milling parameters for multiple process responses. The basic idea of GRAis to find a grey-relational grade (GRG), which can be used for the optimization conversion from a multi-objective case to a single-objective case. GRG is also used to estimate the parameter effects on the overall performance response.

Keywords:frezanje, optimiranje, hrapavost površin, odvajanje odrezkov, metode Grey-Taguchi, milling, optimization, Grey-Taguchi methods, robust parameter design
Work type:Not categorized (r6)
Tipology:1.01 - Original Scientific Article
Organization:FS - Faculty of Mechanical Engineering
Number of pages:str. 400-403
Numbering:Letn. 191, št. 1/3
ISSN on article:0924-0136
COBISS.SI-ID:10025499 Link is opened in a new window
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Record is a part of a journal

Title:Journal of materials processing technology
Shortened title:J. mater. process. technol.
COBISS.SI-ID:30105600 This link opens in a new window

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