Szczegóły

Tytuł artykułu

Effects of cutting parameters on quality of surface produced by machining of titanium alloy and their optimization

Tytuł czasopisma

Archive of Mechanical Engineering

Rocznik

2016

Wolumin

vol. 63

Numer

No 4

Autorzy

Słowa kluczowe

turning ; Titanium alloy ; RSM ; surface roughness

Wydział PAN

Nauki Techniczne

Zakres

531-548

Wydawca

Polish Academy of Sciences, Committee on Machine Building

Data

2016.12.17

Typ

Artykuły / Articles

Identyfikator

DOI: 10.1515/meceng-2016-0030 ; ISSN 0004-0738, e-ISSN 2300-1895

Źródło

Archive of Mechanical Engineering; 2016; vol. 63; No 4; 531-548

Referencje

Sun (2015), Effects of cutting parameters on dry machining Ti - alloy with ultra - hard tools of Advanced Manufacturing Technology, International Journal, 6, 351. ; Namb (2011), Influence of coolant in machinability of titanium alloy ( Ti - of Surface Engineered Materials and Advanced Technology, Journal, 6, 9. ; Wei (2012), Tool wear in turning of titanium alloy after thermo - hydrogen treatment of Mechanical Engineering, Chinese Journal, 25, 776. ; Venkata Ramana (2011), Performance evaluation and selection of optimal parameters in turning of Ti - under different cooling conditions of Innovative Technology and Creative Engineering, International Journal, 6, 10. ; Vinayagamoorthy (2013), Significant the effect of cutting parameters on surface roughness in precision turning in Ti Middle - East of Scientific Research, Journal, 6, 1586. ; Patil (2014), A parametric study on performance of titanium alloy using coated and uncoated carbide insert in CNC turning of Advanced Mechanical Engineering, International Journal, 4, 557. ; Haron (2005), The effect of machining on surface integrity of titanium alloy Ti - of Materials Processing Technology, Journal, 6, 188. ; Ashwin (2013), Optimization of machining parameters for turning operations based on response surface methodology, Measurement, 46, 1521, doi.org/10.1016/j.measurement.2012.11.026 ; Ramesh (2012), Measurement and analysis of surface roughness in turning of aerospace titanium alloy ( gr, Measurement, 5, 1266, doi.org/10.1016/j.measurement.2012.01.010 ; Dillibabu (2013), Optimization of process parameters in dry and wet machining of Ti - ELI using Taguchi Method of Design and Manufacturing Technology, International Journal, 6, 15. ; Yang (2013), andY Toolwear prediction of machining hydrogenated titanium alloy Ti with uncoated carbide tools The of Advanced Manufacturing Technology, International Journal, 6, 673. ; Goyal Srajan (2012), Effects of cutting parameters on surface roughness during turning of Ti - alloy of Current Research, International Journal, 6, 181.
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