229
Views
1
CrossRef citations to date
0
Altmetric
Research Articles

Thermal stability of eutectic FeNiCoCrTi0.6Nb0.4 high-entropy alloy coating

, , &
Pages 61-69 | Received 03 Dec 2020, Accepted 18 May 2021, Published online: 30 May 2021

References

  • Hussain A, Lazoglu I. Distortion in milling of structural parts. CIRP Ann-Manuf Techn. 2019;68(1):105–108.
  • Yeh JW, Chen SK, Lin SJ, et al. Nanostructured high-entropy alloys with multiple principal elements: novel alloy design concepts and outcomes. Adv Eng Mater. 2004;6(5):299–303.
  • Emamifar A, Sadeghi B, Cavaliere P, et al. Microstructural evolution and mechanical properties of AlCrFeNiCoC high entropy alloy produced via spark plasma sintering. Powder Metall. 2019;62(1):61–70.
  • Mane RB, Rajkumar Y, Panigrahi BB. Sintering mechanism of CoCrFeMnNi high-entropy alloy powders. Powder Metall. 2018;61(2):1–8.
  • Hua NB, Wang WJ, Wang QT, et al. Mechanical, corrosion, and wear properties of biomedical Ti-Zr-Nb-Ta-Mo high entropy alloys. J Alloy Compd. 2021;861:157997.
  • Li YC, Li LP, Gao XQ, et al. Research progress on refractory high entropy alloys. Rare Metal Mat Eng. 2020;49(12):4365–4372.
  • Chung D, Ding ZY, Yang Y. Hierarchical eutectic structure enabling superior fracture toughness and superb strength in CoCrFeNiNb0.5 eutectic high entropy alloy at room temperature. Adv Eng Mater. 2019;21(3):1801060.
  • Shu FY, Yang B, Dong SY, et al. Effects of Fe-to-Co ratio on microstructure and mechanical properties of laser cladded FeCoCrBNiSi high-entropy alloy coatings. Appl Surf Sci. 2018;450:538–544.
  • Hassan SF, Nadhreen GJ, Al-Jeddawi MAA, et al. Effect of powder processing on microstructure and mechanical properties of a high-entropy Al24.2Si3.2Cu24.2Ti24.2Ni24.2 alloy. Phil Mag Lett. 2020;100(4):171–180.
  • Sun CF, Li PP, Xi SQ, et al. A new type of high entropy alloy composite Fe18Ni23Co25Cr21Mo8WNb3C2 prepared by mechanical alloying and hot pressing sintering. Mat Sci Eng A. 2018;728:144–150.
  • Agrawal P, Thapliyal S, Nene SS, et al. Excellent strength-ductility synergy in metastable high entropy alloy by laser powder bed additive manufacturing. Addit Manuf. 2020;32:101098.
  • Dong Y, Jiang L, Jiang H, et al. Effects of annealing treatment on microstructure and hardness of bulk AlCrFeNiMo0.2 eutectic high-entropy alloy. Mater Design. 2015;82:91–97.
  • Niu ZZ, Wang YZ, Geng C, et al. Microstructural evolution, mechanical and corrosion behaviors of as-annealed CoCrFeNiMo (x = 0, 0.2, 0.5, 0.8, 1) high entropy alloys. J Alloy Compd. 2020;820:153273.
  • Stepanov ND, Yurchenko NY, Tikhonovsky MA, et al. Effect of carbon content and annealing on structure and hardness of the CoCrFeNiMn-based high entropy alloys. J Alloy Compd. 2016;687:59–71.
  • Zhang H, Pan Y, He YZ. Effects of annealing on the microstructure and properties of 6FeNiCoCrAlTiSi high-entropy alloy coating prepared by laser cladding. J Therm Spray Techn. 2011;20(5):1049–1055.
  • Li AM, Zhang XY. Thermodynamic analysis of the simple microstructure of AlCrFeNiCu high-entropy alloy with multi-principal elements. Acta Metall Sin-Engl. 2009;22(3):219–224.
  • Zhang MN, Zhou XL, Yu XN, et al. Synthesis and characterization of refractory TiZrNbWMo high-entropy alloy coating by laser cladding. Surf Coat Tech. 2017;311:321–329.
  • Sharma G, Ramanujan RV, Tiwari GP. Instability mechanisms in lamellar microstructures. Acta Mater. 2000;48(4):875–889.
  • Chang SY, Li CE, Huang YC, et al. Structural and thermodynamic factors of suppressed interdiffusion kinetics in multi-component high-entropy materials. Sci Rep. 2014;4:1–8.
  • Zhang H, Pan Y, He YZ. Grain refinement and boundary misorientation transition by annealing in the laser rapid solidified 6FeNiCoCrAlTiSi multicomponent ferrous alloy coating. Surf Coat Tech. 2011;205:4068–4072.
  • Zhang H, Pan Y, He YZ. Synthesis and characterization of FeCoNiCrCu high-entropy alloy coating by laser cladding. Mater Design. 2011;32:1910–1915.
  • Sriharitha R, Murty BS, Kottada RS. Alloying, thermal stability and strengthening in spark plasma sintered AlxCoCrCuFeNi high entropy alloys. J Alloy Compd. 2014;583:419–426.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.