4.5 Article

Fuzzy modeling and analysis of machining parameters in machining titanium alloy

Journal

MATERIALS AND MANUFACTURING PROCESSES
Volume 23, Issue 3-4, Pages 439-447

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/10426910801976676

Keywords

chip formation; flank wear; fuzzy logic; machining; modeling; orthogonal array; polycrystalline diamond (PCD) insert; SEM studies; specific cutting pressure; surface profiles; surface roughness; titanium alloy; Ti-6Al-4V alloy; turning

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Titanium alloys are utilized in many engineering fields such as chemical, industrial, marine, and aerospace due to their unique properties. Machining of these materials causes severe problems. At high temperatures, they become chemically active and tend to react with tool materials. In the present study, fuzzy logic (a tool in artificial intelligence) is used for the prediction of cutting parameters in turning titanium alloy (Ti-6Al-4V). The parameters considered in this study are cutting speed, feed, and the depth of cut. Fuzzy rule-based modeling is employed for prediction of tool flank wear, surface roughness, and specific cutting pressure in machining of titanium alloy. These models can be effectively used to predict the tool flank wear, surface roughness, and specific cutting pressure in machining of titanium alloys. Analysis of the influences of the individual important machining parameters on the responses have been carried out and presented in this study.

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