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Effect of Built-Up Edge Formation during Stable State of Wear in AISI 304 Stainless Steel on Machining Performance and Surface Integrity of the Machined Part 원문보기

Materials, v.10 no.11, 2017년, pp.1230 -   

Seid Ahmed, Yassmin (McMaster Manufacturing Research Institute (MMRI), Department of Mechanical Engineering, McMaster University, 1280 Main Street West, Hamilton, ON L8S4L7, Canada) ,  Fox-Rabinovich, German (gfox@mcmaster.ca (G.F.-R.)) ,  Mario Paiva, Jose (paivajj@mcmaster.ca (J.M.P.)) ,  Wagg, Terry (waggt@mcmaster.ca (T.W.)) ,  Clarence Veldhuis, Stephen (veldhu@mcmaster.ca (S.C.V.))

Abstract AI-Helper 아이콘AI-Helper

During machining of stainless steels at low cutting -speeds, workpiece material tends to adhere to the cutting tool at the tool–chip interface, forming built-up edge (BUE). BUE has a great importance in machining processes; it can significantly modify the phenomenon in the cutting zone, direc...

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참고문헌 (34)

  1. 1. Fernández-Abia A.T. Barreiro J. Fernández-Larrinoa J. López de Lacalle L.N. Fernández-Valdivielso A. Perreira O.M. Behaviour of PVD coatings in the turning of austenitic stainless steels Procedia Eng. 2013 63 133 141 10.1016/j.proeng.2013.08.241 

  2. 2. Outeiro J.C. Dias A.M. Lebrum J.L. Astakhov V.P. Machining residual stresses in AISI 316L steel and Their correlation with the cutting parameters Mach. Sci. Technol. Manuf. Technol. 2002 6 251 270 10.1081/MST-120005959 

  3. 3. Leppert T. Peng R.L. Residual stresses in surface layer after dry and MQL turning of AISI 316L steel Prod. Eng. Res. Dev. 2012 6 367 374 10.1007/s11740-012-0389-3 

  4. 4. Diniz A.E. Marcondes F.C. Coppini N.L. The Performance Evaluation of Ceramic and Carbide Cutting Tools in Machining of Stainless Steels. Tecnologia da Usinagem dos Materiais, [Technology of Machining of Materials] 5th ed. Artliber Editora São Paulo, Brazil 2006 

  5. 5. Atlati S. Haddag B. Nouari M. Moufki A. Effect of local friction and contact nature on the Built-Up Edge formation process in machining ductile metals Tribol. Int. 2015 90 217 227 10.1016/j.triboint.2015.04.024 

  6. 6. Kuznetsov V.D. Metal Transfer and Build up in Friction and Cutting Gostekhizdat Moscow, Russia 1966 

  7. 7. Fox-Rabinovich G.S. Paiva J.M. Gershman I. Aramesh M. Cavelli D. Yamamoto K. Dosbaeva G. Veldhuis S.C. Control of self-organized criticality through adaptive behavior of nano-structured thin film coatings Entropy 2016 18 290 10.3390/e18080290 

  8. 8. Jang D.Y. Watkins T.R. Kozaczek K.J. Hubbard C.R. Cavin O.B. Surface residual stresses in machined austenitic stainless steel Wear 1996 194 168 173 10.1016/0043-1648(95)06838-4 

  9. 9. Saoubi R.M. Outeiro J.C. Changeux B. Lebrun J.L. Dias A.M. Residual stress analysis in orthogonal machining of standard and resulfurized AISI 316L steels J. Mater. Process. Technol. 1999 96 225 233 

  10. 10. Sauvage X. Le Breton J.M. Guillet A. Meyer A. Teillet J. Phase transformation in surface layers of machined steels investigated by X-ray diffraction and Mössbauer spectrometry Mater. Sci. Eng. 2003 362 181 186 10.1016/S0921-5093(03)00531-8 

  11. 11. Kulkarni A.P. Joshi G.G. Sargade V.G. Dry turning of AISI 304 austenitic stainless steel using AlTiCrN coated insert produced by HPPMS technique Procedia Eng. 2013 64 737 746 10.1016/j.proeng.2013.09.149 

  12. 12. Takago S. Gotoh M. Sasaki T. Hirose Y. The residual stress measurements of TiCN PVD films, International for Diffraction Data Adv. X-ray Anal. 2002 45 365 370 

  13. 13. Valiorgue F. Rech J. Hamdi H. Gilles P. Belg J. 3D modeling of residual stresses induced in finish turning of an AISI304L stainless steel Int. J. Mach. Tools Manuf. 2012 53 77 90 10.1016/j.ijmachtools.2011.09.011 

  14. 14. Vashist M. Paul S. Correlation between full width at half maximum (FWHM) of XRD peak with residual stress on ground surfaces J. Philos. Mag. 2012 92 33 10.1080/14786435.2012.704429 

  15. 15. Saoubi R.M. Outeiro J.C. Chandrasekaran H. Dillon O.W. Jawahir I.S. A review of surface integrity in machining and its impact on functional performance and life of machined products Int. J. Sustain. Manuf. 2008 1 203 236 10.1504/IJSM.2008.019234 

  16. 16. Jeelani S. Bailey J.A. Residual stress distribution in machining annealed 18% nickel maraging steel J. Eng. Mater. Technol. 1986 108 93 98 10.1115/1.3225865 

  17. 17. Henriksen E.K. Residual stresses in machined surfaces Trans. ASME 1951 73 69 76 

  18. 18. Johnson K.L. Contact Mechanics Cambridge University Press England, UK 1987 9780521347969 

  19. 19. Fitzpatrick M.E. Fry A.T. Holdway P. Kandil F.A. Shackleton J. Suominen L. Determination of Residual Stress by X-Ray Diffraction National Physical Lab. Teddington 2005 Available online: http://oro.oprn.ca.uk/11283/ (accessed on 24 October 2017) 

  20. 20. Outeiro J.C. Pina J.C. Saoubi R. Pusavec F. Jawahir I.S. Analysis of residual stresses induced by dry turning of difficult to- machine materials Ann. CIRP 2008 57 77 80 10.1016/j.cirp.2008.03.076 

  21. 21. Capello E. Residual stresses in turning: Part I: Influence of process parameters J. Mater. Process. Technol. 2005 160 221 228 10.1016/j.jmatprotec.2004.06.012 

  22. 22. Deng X. Shet C. Residual stresses and strains in orthogonal metal cutting Int. J. Mach. Tool Technol. 2007 43 573 587 

  23. 23. Xavior M.A. Adithan M. Determining the influence of cutting fluids on tool wear and surface roughness during turning of AISI 304 austenitic stainless steel J. Mater. Process. Technol. 2009 209 900 909 10.1016/j.jmatprotec.2008.02.068 

  24. 24. Selvam M.S. Radhakrishnan V. Characteristics of a surface machined with a single point tool Tribology 1973 6 93 96 10.1016/0041-2678(73)90242-X 

  25. 25. Arunachalam R.M. Mannan M.A. Spowage M.A. Surface integrity when machining age hardened Inconel 718 with coated carbide cutting tools Int. J. Mach. Tools Manuf. 2004 44 1481 1491 10.1016/j.ijmachtools.2004.05.005 

  26. 26. Nagawaka Y. Usami K. Minato A. Tamamura T. Sasaki R. Naruse A. Effects of surface finish on residual stress distribution and stress corrosion cracking susceptibility of Type 304 Austenitic Stainless Steel In A Boiling 42% Mgcl/2 Solution ICM3 1979 2 603 610 

  27. 27. Wiesner C. 3D modeling of residual stresses induced in finish turning of an AISI 304L stainless steel Metall. Mater. Trans. 1992 23 989 996 10.1007/BF02675573 

  28. 28. Liu C.R. Barash M.M. Variables governing patterns of mechanical residual stress in a machined surface J. Eng. Ind. 1982 104 257 264 10.1115/1.3185828 

  29. 29. ISO 15510-Stainless Steels-Chemical Composition: Annex C: Classification of Grades, c.1: Stainless Steels International Organization for Standardization Geneva, Switzerland 2014 

  30. 30. ISO 3685–Tool Life Testing with Single-Point Turning Tools 2nd ed. International Organization for Standardization Geneva, Switzerland 1993 (Revised in 2017) 

  31. 31. ISO 25178-2 Geometrical Product Specifications (GPS)–Surface Texture: Areal Part 2: Terms, Definitions and Surface Texture Parameters International Organization for Standardization Geneva, Switzerland 2012 

  32. 32. Ulutan D. Ozel T. Machining induced surface integrity in titanium and nickel alloys: A review Int. J. Mach. Tools Manuf. 2011 51 250 280 10.1016/j.ijmachtools.2010.11.003 

  33. 33. Natash A.R. Ghani J.A. Syariff J. Haron C.H.C. Hadi M.A. Comparison of Dry and Cryogenic Machining on Chip Formation and Coefficient of Friction in Turning AISI 4340 Alloy Steel Appl. Mech. Mater. 2014 554 7 11 

  34. 34. Seid Ahmed Y. Paiva J.M. Covelli D. Veldhuis S.C. Investigation of Coated Cutting Tool Performance during Machining of Super Duplex Stainless Steels through 3D Wear Evaluations Coatings 2017 7 127 10.3390/coatings7080127 

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