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Review Article

Review on the effect of surface textured tool in the field of machining

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Pages 814-832 | Accepted 19 Feb 2023, Published online: 02 Mar 2023

References

  • Zhou X, He L, Zhou T, et al. A comprehensive review of tool surface texturing in the cutting process. Int J Adv Manuf Technol. 2022;1–41.
  • Ranjan P, Hiremath SS. Role of textured tool in improving machining performance: a review. J Manuf Processes. 2019;43:47–73.
  • Gajrani KK, Suvin PS, Kailas SV, et al. Machining of hard materials using textured tool with minimum quantity nano-green cutting fluid. CIRP J Manuf Sci Technol. 2021;35:410–421.
  • Mishra SK, Ghosh S, Aravindan S. Performance of laser processed carbide tools for machining of Ti6Al4V alloys: a combined study on experimental and finite element analysis. Precis eng. 2019;56:370–385.
  • Arslan A, Masjuki HH, Kalam MA, et al. Surface texture manufacturing techniques and tribological effect of surface texturing on cutting tool performance: a review. Critl Rev Solid State Mater Sci. 2016;41(6):447–481.
  • Butler-Smith P, Esfahani RN, Chrostek-Mroz A, et al. On the tribological and machining performance of laser textured sintered carbide cutting tools in turning of Al2024. Procedia CIRP. 2022;108:358–361.
  • Wang Y, Zhou T, Riemer O, et al. Tribological mechanism of micro/meso/macroscopic textured surfaces under different normal forces, relative velocities, and sliding directions. Tribol Int. 2022;176:107708.
  • Pigott RJS, Colwell AT. Hi-jet system for increasing tool life (No. 520254). SAE Technical Paper. 1952.
  • Singh J, Gill SS, Dogra M, et al. A review on cutting fluids used in machining processes. Eng Res Exp. 2021;3(1):012002.
  • Kipling MD. Health hazards from cutting fluids. Tribol Int. 1977;10(1):41–46.
  • Pervaiz S, Kannan S, Kishawy HA. An extensive review of the water consumption and cutting fluid based sustainability concerns in the metal cutting sector. J Clean Prod. 2018;197:134–153.
  • Sankar MR, Choudhury SK. Experimental study and modeling of machining with dry compressed air, flood and minimum quantity cutting fluid cooling techniques. Procedia CIRP. 2015;31:228–233.
  • Gajrani KK, Reddy RPK, Sankar MR. Experimental comparative study of conventional, micro-textured and coated micro-textured tools during machining of hardened AISI 1040 alloy steel. Int J Mach Mach Mater. 2016;18(5–6):522–539.
  • Sankar MR, Ramkumar J, Aravindan S. Machining of metal matrix composites with minimum quantity cutting fluid and flood cooling. In: Advanced materials research. Vol. 299. Trans Tech Publications Ltd; 2011. pp. 1052–1055.
  • Shihomatsu A, Button ST, Silva IBD. Tribological behavior of laser textured hot stamping dies. Adv Tribol. 2016;2016:1–15.
  • Lei S, Devarajan S, Chang Z. A study of micropool lubricated cutting tool in machining of mild steel. J Mater Process Technol. 2009;209(3):1612–1620.
  • Obikawa T, Kamio A, Takaoka H, et al. Micro-texture at the coated tool face for high performance cutting. Int J Mach Tools Manuf. 2011;51(12):966–972.
  • Sharma V, Pandey PM. Recent advances in turning with textured cutting tools: a review. J Clean Prod. 2016;137:701–715.].
  • Kim DM, Bajpai V, Kim BH, et al. Finite element modeling of hard turning process via a micro-textured tool. Int J Adv Manuf Technol. 2015;78(9):1393–1405.
  • Devaraj S, Malkapuram R, Singaravel B. Performance analysis of micro textured cutting insert design parameters on machining of Al-MMC in turning process. Int J Lightweight Mater Manuf. 2021;4(2):210–217.
  • Ahmed YS, Veldhuis SC. Enhancement of carbide tool performance during dry machining through a combination of laser surface texturing and tungsten disulfide soft coatings. Surf Coat Technol. 2021;428:127849.
  • Vázquez JM, Salguero J, Del Sol I. Texturing design of WC-Co through laser parameter selection to improve lubricant retention ability of cutting tools. Int J Refract Metals Hard Mater. 2022;107:105880.
  • Wu Z, Bao H, Xing Y, et al. Tribological characteristics and advanced processing methods of textured surfaces: a review. Int J Adv Manuf Technol. 2021;114(5):1241–1277.
  • Özel T, Biermann D, Enomoto T, et al. Structured and textured cutting tool surfaces for machining applications. CIRP Ann. 2021;70(2):495–518.
  • Borghi A, Gualtieri E, Marchetto D, et al. Tribological effects of surface texturing on nitriding steel for high-performance engine applications. Wear. 2008;265(7–8):1046–1051.
  • Vlădescu SC, Fowell M, Mattsson L, et al. The effects of laser surface texture applied to internal combustion engine journal bearing shells–an experimental study. Tribol Int. 2019;134:317–327.
  • Wang T, Huang W, Liu X, et al. Experimental study of two-phase mechanical face seals with laser surface texturing. Tribol Int. 2014;72:90–97.
  • Brizmer V, Kligerman Y. A laser surface textured journal bearing. J Tribol. 2012;134(3). DOI:10.1115/1.4006511
  • Chen Y, Wang J, Chen M. Enhancing the machining performance by cutting tool surface modifications: a focused review. Mach Sci Technol. 2019;23(3):477–509.
  • Enomoto T, Sugihara T, Yukinaga S, et al. Highly wear-resistant cutting tools with textured surfaces in steel cutting. CIRP Ann. 2012;61(1):571–574.
  • Rapoport L, Moshkovich A, Perfilyev V, et al. Friction and wear of MoS2 films on laser textured steel surfaces. Surf Coat Technol. 2008;202(14):3332–3340.
  • Wang X, Kato K, Adachi K, et al. Loads carrying capacity map for the surface texture design of SiC thrust bearing sliding in water. Tribol Int. 2003;36:189–197.
  • Chang W, Sun J, Luo X, et al. Investigation of microstructured milling tool for deferring tool wear. Wear. 2011;271(9–10):2433–2437.
  • Machado AR, da Silva LR, de Souza FC, et al. State of the art of tool texturing in machining. J Mater Process Technol. 2021;293:117096.
  • Alagan NT, Zeman P, Hoier P, et al. Investigation of micro-textured cutting tools used for face turning of alloy 718 with high-pressure cooling. J Manuf Processes. 2019;37:606–616.
  • Kawasegi N, Sugimori H, Morimoto H, et al. Development of cutting tools with microscale and nanoscale textures to improve frictional behavior. Precis eng. 2009;33(3):248–254.
  • Sugihara T, Kobayashi R, Enomoto T. Direct observations of tribological behavior in cutting with textured cutting tools. Int J Mach Tools Manuf. 2021;168:103726.
  • Arulkirubakaran D, Senthilkumar V, Chilamwar VL, et al. Performance of surface textured tools during machining of Al-Cu/TiB2 composite. Measurement. 2019;137:636–646.
  • Arulkirubakaran D, Senthilkumar V, Kumawat V. Effect of micro-textured tools on machining of Ti–6Al–4V alloy: an experimental and numerical approach. Int J Refract Metals Hard Mater. 2016;54:165–177.
  • Jianxin D, Ze W, Yunsong L, et al. Performance of carbide tools with textured rake-face filled with solid lubricants in dry cutting processes. Int J Refract Metals Hard Mater. 2012;30(1):164–172.
  • Etsion I, Halperin G. A laser surface textured hydrostatic mechanical seal. Tribol Trans. 2002;45(3):430–434.
  • Koshy P, Tovey J. Performance of electrical discharge textured cutting tools. CIRP Ann. 2011;60(1):153–156.
  • Lian Y, Chen H, Mu C, et al. Experimental investigation and mechanism analysis of tungsten disulfide soft coated micro-nano textured self-lubricating dry cutting tools. Int J Precis Eng Manuf. 2018;5(2):219–230.
  • Elias JV, Venkatesh N, Lawrence P, et al. Tool texturing for micro-turning applications–an approach using mechanical micro indentation. Mater Manuf Processes. 2021;36(1):84–93.
  • Wenlong S, Jianxin D, Ze W, et al. Cutting performance of cemented-carbides-based self-lubricated tool embedded with different solid lubricants. Int J Adv Manuf Technol. 2011;52(5):477–485.
  • Zhu DNSQ, Qu NS, Li HS, et al. Electrochemical micromachining of microstructures of micro hole and dimple array. CIRP Ann. 2009;58(1):177–180.
  • Da Silva WM, Suarez MP, Machado AR, et al. Effect of laser surface modification on the micro-abrasive wear resistance of coated cemented carbide tools. Wear. 2013;302(1–2):1230–1240.
  • Niketh S, Samuel GL. Surface texturing for tribology enhancement and its application on drill tool for the sustainable machining of titanium alloy. J Clean Prod. 2017;167:253–270.
  • Zhang C, Guo P, Ehmann KF, et al. Turning of microgrooves both with and without aid of ultrasonic elliptical vibration. Mater Manuf Processes. 2015;30(8):1001–1009.
  • Sugihara T, Enomoto T. Performance of cutting tools with dimple textured surfaces: a comparative study of different texture patterns. Precis eng. 2017;49:52–60.
  • Vasumathy D, Meena A. Influence of micro scale textured tools on tribological properties at tool-chip interface in turning AISI 316 austenitic stainless steel. Wear. 2017;376:1747–1758.
  • Li N, Chen Y, Kong D, et al. Experimental investigation with respect to the performance of deep submillimeter-scaled textured tools in dry turning titanium alloy Ti-6al-4V. Appl Surface Sci. 2017;403:187–199.
  • Mishra SK, Ghosh S, Aravindan S. Characterization and machining performance of laser-textured chevron shaped tools coated with AlTiN and AlCrN coatings. Surf Coat Technol. 2018;334:344–356.
  • Wang C, Hong J, Cui M, et al. (2022). The effects of simultaneous laser nitriding and texturing on surface hardness and tribological properties of Ti6Al4V. Surface and Coatings Technology, 437, 128358.
  • Wu Z, Deng J, Xing Y, et al. Effect of surface texturing on friction properties of WC/Co cemented carbide. Mater Des. 2012;41:142–149.
  • Wu Z, Deng JX, Lian YS, et al. Experimental study on the cutting temperature with micro-texturing self-lubricated tools. In: Advanced materials research. Vol. 291. Trans Tech Publications Ltd; 2011. pp. 715–720.
  • Zhang JF, Chen ZM, Feng PF, et al. The characteristics of titanium alloy chip-breaking by orthogonal cutting with a surface-textured cutting tool. In: Applied mechanics and materials. Vol. 365. Trans Tech Publications Ltd; 2013. pp. 1235–1239.
  • Wu Z, Deng JX, Zhao J. Study on tool life of surface textured tool in dry cutting of Ti-6al-4V alloys. In: Advanced materials research. Vol. 538. Trans Tech Publications Ltd; 2012. pp. 1245–1249.
  • Vignesh G, Barik D, Ragupathi P, et al. Experimental analysis on turning of AISI 4340 steel using non-textured, dimple textured and MoS2 coated dimple textured carbide cutting inserts at the rack surface. Mater Today Proc. 2020;33:2616–2620.
  • Zhang Y, Outeiro JC, Mabrouki T. On the selection of Johnson-Cook constitutive model parameters for Ti-6al-4 V using three types of numerical models of orthogonal cutting. Procedia CIRP. 2015;31:112–117.
  • Sagar CK, Priyadarshini A, Gupta AK. Effect of Johnson–Cook material model constants on predicted chip morphology and forces in FE simulations of machining operation for 93% WHA alloy. In: Advances in Simulation, Product Design and Development. Singapore: Springer; 2020. pp. 227–239.
  • Gurusamy M, Sriram S. Investigations on the choice of Johnson–Cook constitutive model parameters for the orthogonal cutting simulation of inconel 718. J Adv Manuf Syst. 2022;1–25. DOI:10.1142/S0219686723500014
  • Wu Z, Bao H, Liu L, et al. Numerical investigation of the performance of micro-textured cutting tools in cutting of Ti-6al-4V alloys. Int J Adv Manuf Technol. 2020;108(1):463–474.
  • Ma J, Duong NH, Lei S. 3D numerical investigation of the performance of microgroove textured cutting tool in dry machining of Ti-6al-4V. Int J Adv Manuf Technol. 2015;79(5):1313–1323.
  • Wu H, Duong NH, Ma J, et al. CEL FEM investigation of effects of microgrooved cutting tools in high speed machining of AISI 1045 steel. In International Manufacturing Science and Engineering Conference (Vol. 50725, p. V001T02A034). American Society of Mechanical Engineers; June 2017.

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