2018
DOI: 10.1007/s40430-018-0992-0
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Prediction of tool chatter and metal removal rate in turning operation on lathe using a new merged technique

Abstract: Tool chatter is an unstable phenomenon resulting in inaccurate machining and detritions of cutting tool. In this study, a combination of statistical approach and signal pre-processing technique has been adopted to explore the mechanism of tool chatter in turning operation. The effects of cutting parameters: depth of cut (d), feed (f) and spindle speed (N) on chatter have been investigated based on response surface model (RSM). Experimentally acquired raw chatter signals are preprocessed using wavelet transform… Show more

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Cited by 6 publications
(1 citation statement)
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References 31 publications
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“…The mathematical relation between input and output variables in RSM is generally expressed in the form of secondorder polynomial expression [20,21] as given by: where η is response (TS), β o , β i and β ii (i = 1, 2…z), β ij (i = 1, 2…z − 1, j = 2, 3…z) are unknown regressing coefficients, X 1 , X 2 …X z are independent variables, z is no. of input factors and ε is the random error.…”
Section: Response Surface Methods (Rsm)mentioning
confidence: 99%
“…The mathematical relation between input and output variables in RSM is generally expressed in the form of secondorder polynomial expression [20,21] as given by: where η is response (TS), β o , β i and β ii (i = 1, 2…z), β ij (i = 1, 2…z − 1, j = 2, 3…z) are unknown regressing coefficients, X 1 , X 2 …X z are independent variables, z is no. of input factors and ε is the random error.…”
Section: Response Surface Methods (Rsm)mentioning
confidence: 99%