850
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Wear performance of AISI 4140 low-alloy steel PVD coated with TiN

ORCID Icon & ORCID Icon
Pages 971-987 | Accepted 20 Feb 2023, Published online: 13 Mar 2023

References

  • Holmberg K, Erdemir A. Influence of tribology on global energy consumption, costs and emissions. Friction. 2017;5:263–284. DOI:10.1007/s40544-017-0183-5.
  • Zhang S, Ma T, Erdemir A, et al. Tribology of two-dimensional materials: from mechanisms to modulating strategies. Materials Today Elsevier. 2019;26:67–86. DOI:10.1016/j.mattod.2018.12.002.
  • Bozkurt YB, Kovacı H, Yetim AF, et al. Tribocorrosion properties and mechanism of a shot peened AISI 4140 low-alloy steel. Surf Coat Technol. 2022;440:128444.
  • Baptista A, Silva F, Porteiro J, et al. sputtering physical vapour deposition (PVD) coatings: a critical review on process improvement and market trend demands. Coatings 2018;8:402. https://www.mdpi.com/2079-6412/8/11/402/htm InternetAvailable from: [cited 2022 Dec 5].
  • Badiger PV, Desai V, Ramesh MR, et al. Effect of cutting parameters on tool wear, cutting force and surface roughness in machining of MDN431 alloy using Al and Fe coated tools. Mater Res Express. [cited 2022 Dec 6]. 2018;6:016401. InternetAvailable from. 1. https://iopscience.iop.org/article/10.1088/2053-1591/aae2a3
  • Walia RS, Singh RP, Butola R, et al. Wear behaviour on a Pin-on-Disc setup for thermal spray of coating using ABAQUS: study and computational analysis. 10.1080/2374068X.2022.2126926. 2022
  • Gurumurthy, Sharma SS, Gowrishankar, et al. Study of mechanical properties of dual phase EN19 steel (AISI4140). Indian J Sci Technol. 2016;9(37).
  • Baptista A, Silva F, Porteiro J, et al. Sputtering physical vapour deposition (PVD) coatings: a critical review on process improvement and market trend demands. Coatings 2018;8:402 InternetAvailable from: [cited 2021 Dec 6] 10.3390/coatings8110402.
  • Hussain M, Askari Rizvi SH, Abbas N, et al. Recent developments in coatings for orthopedic metallic implants. Coatings 2021;11:791. https://www.mdpi.com/2079-6412/11/7/791/htm InternetAvailable from: [cited 2021 Dec 6].
  • Xian G, Xiong J, Fan H, et al. Investigations on microstructure, mechanical and tribological properties of TiN coatings deposited on three different tool materials. Int J Refract Metals Hard Mater. 2022;102:105700.
  • Daniel M, Friedemann M, Jöhrmann N, et al. Influence of the substrate thermal expansion coefficient on the morphology and elastic stress of CoSb3 thin films. Phys Status Solidi (A) Appl Mater Sci. 2013;210:140–146.
  • Sprute T, Tillmann W, Grisales D, et al. Influence of substrate pre-treatments on residual stresses and tribo-mechanical properties of TiAlN-based PVD coatings. Surf Coat Technol. 2014;260:369–379.
  • Wang YX, Zhang S, Lee JW, et al. Influence of bias voltage on the hardness and toughness of CrAlN coatings via magnetron sputtering. Surf Coat Technol. 2012;206(24):5103–5107. DOI:10.1016/j.surfcoat.2012.06.041
  • Şimşir M, Selçuk B, Aslan N Investigating the effect of testing parameters on adhesive wear using Taguchi method. [Internet]. 2016 [cited 2022 Dec 12];1:493–507.Available from: https://www.tandfonline.com/doi/abs/10.1080/2374068X.2016.1143209.
  • Hanief M, Wani MF. Effect of surface roughness on wear rate during running-in of En31-steel: model and experimental validation. Mater Lett. 2016;176:91–93.
  • Pereira K, Yue T, Abdel Wahab M. Multiscale analysis of the effect of roughness on fretting wear. Tribol Int. 2017;110:222–231.
  • Li B, Li P, Zhou R, et al. Contact mechanics in tribological and contact damage-related problems: a review. Tribol Int 2022;171:107534. https://linkinghub.elsevier.com/retrieve/pii/S0301679X22001074 InternetAvailable from: [cited 2022 Apr 6].
  • Alexandrov S, Jeng Y-R, Kuo C-Y, et al. Towards the theoretical/experimental description of the evolution of material properties at frictional interfaces in metal forming processes. Tribol Int 2022;171:107518. https://linkinghub.elsevier.com/retrieve/pii/S0301679X22000913 InternetAvailable from: [cited 2022 Apr 6].
  • Badiger PV, Desai V, Ramesh MR, Development and characterization of Ti/TiC/TiN coatings by cathodic arc evaporation technique. Trans Indian Inst Met 2017;70:2459–2464. https://link.springer.com/article/10.1007/s12666-017-1107-9 InternetAvailable from: [cited 2022 Dec 9].
  • Jones MI, McColl IR, Grant DM. Effect of substrate preparation and deposition conditions on the preferred orientation of TiN coatings deposited by RF reactive sputtering. Surf Coat Technol. 2000;132(2–3):143–151.
  • Chen YM, Yu GP, Huang JH. Characterizing the effects of multiprocess parameters on the preferred orientation of TiN coating using a combined index. Vacuum. 2002;66:19–25.
  • Lin CH, Tsai YZ, Duh JG. Effect of grain size on mechanical properties in CrAlN/SiNx multilayer coatings. Thin Solid Films. 2010;518(24):7312–7315.
  • Rebouta L, Tavares CJ, Aimo R, et al. Hard nanocomposite Ti–Si–N coatings prepared by DC reactive magnetron sputtering. Surf Coat Technol. 2000;133–134:234–239.
  • Mote VD, Purushotham Y, Dole BN Williamson-Hall analysis in estimation of lattice strain in nanometer-sized ZnO particles. 2012 [cited 2022 Aug 10]; Available from: http://www.jtaphys.com/content/2251-7235/6/1/6.
  • Zhang L, Yang H, Pang X, et al. Microstructure, residual stress, and fracture of sputtered TiN films. Surf Coat Technol. 2013;224:120–125.
  • Chang K, Dong Y, Zheng G, et al. Friction and wear properties of TiAlN coated tools with different levels of surface integrity. Ceram Int. 2022;48(4):4433–4443. DOI:10.1016/j.ceramint.2021.10.105