184
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Dendrite structure and microhardness of as-cast 4Cr5MoSiV1 steel between different homogenisation processes

, , , , &
Pages 1465-1475 | Received 13 Aug 2021, Accepted 05 Dec 2021, Published online: 23 Dec 2021

References

  • Zhang Q, Zhang S, Li JF. Three dimensional finite element simulation of cutting forces and cutting temperature in hard milling of AISI H13 steel. Procedia Manuf. 2017;10:37–47.
  • Mchugh KM, Lin YJ, Zhou YZ, et al. Influence of cooling rate on phase formation in spray-formed H13 tool steel. Mater Sci Eng A. 2008;477:50–57.
  • Krauss G. Solidification, segregation, and banding in carbon and alloy steels. Metall Mater Trans B. 2003;34:781–792.
  • Herring DH. Segregation and banding in carbon and alloy steel. Ind Heat. 2013;81:16.
  • Lippard HE, Campbell CE, Bjorklind T, et al. Microsegregation behavior during solidification and homogenization of AerMet100 steel. Metall Mater Trans B. 1998;29(1):205–210.
  • Han YH, Li CS, Ren JY, et al. Dendrite segregation changes in high temperature homogenization process of as-cast H13 steel. ISIJ Int 2019;59:1893–1900.
  • Lu MH, Tian YX, Cai HY, et al. Effect of high-temperature homogenization on banded segregation and impact toughness of H13 steel mandrel. Heat Treat Met. 2010;35:9–14.
  • Torkar M, Vodopivec F, Petovar S. Analysis of segregations in as-cast X40CrMoV51 steel. Mater Sci Eng A. 1993;173:313–316.
  • Luo Y. Study on the influence of high temperature homogenizing and solution on the microstructure and property of 4Cr5MoSiV1 steel. Adv Mat Res. 2012;549:567–571.
  • Pan XL, Yu HY, Tu GF, et al. Segregation and diffusion behavior of niobium in a highly alloyed nickel-base superalloy. Trans Nonferrous Metals Soc China. 2011;21:2402–2407.
  • Zhang F, Shen J, Yan XD, et al. Homogenization heat treatment of 2099 Al–Li alloy. Rare Met. 2014;33:28–36.
  • Radetić T, Popović M, Romhanji E. Microstructure evolution of a modified AA5083 aluminum alloy during a multistage homogenization treatment. Mater Char. 2012;65:16–27.
  • Xiao T, Deng YL, Ye LY, et al. Effect of three-stage homogenization on mechanical properties and stress corrosion cracking of Al-Zn-Mg-Zr alloys. Mater Sci Eng A. 2016;675:280–288.
  • Ramezani M, Pasang T, Chen Z, et al. Evaluation of carbon diffusion in heat treatment of H13 tool steel under different atmospheric conditions. J Mater Res Technol. 2015;4:114–125.
  • LI HY, Su XJ, Yin H, et al. Microstructural evolution during homogenization of Al-Cu-Li-Mn-Zr-Ti alloy. Trans Nonferrous Metals Soc China. 2013;23:2543–2550.
  • Han YH, Li CS, Ren JY, et al. Microstructural evolution during homogenization and hot deformation for as-cast H13 steel. Steel Res Int. 2021;92:2000439.
  • Han YH, Li CS, He S, et al. Effect of homogenisation temperature on the microstructure and microhardness of as-cast H13 steel. Met Mater Int. 2021:1–15. doi:https://doi.org/10.1007/s12540-020-00917-0.
  • Ma DS, Zhou J, Chen ZZ, et al. Influence of thermal homogenization treatment on structure and impact toughness of H13 ESR steel. J Iron Steel Res Int. 2009;16:56–60.
  • Tang W, Wu X, Min Y, et al. Effect of microstructural homogeneity on mechanical and thermal fatigue behavior of a hot-work tool steel. Presented at the 6th Int. Tooling Conf; Shanghai, P. R. China. 2002.
  • Ghomashchi MR, Sellars CM. Microstructural changes in as-cast M2 grade high speed steel during high temperature treatment. Met Sci. 1984;18:44–48.
  • Neumann G, Tuijn C. Self-diffusion and impurity diffusion in pure metals: handbook of experimental data. 1st ed. Oxford: Elsevier; 2009.
  • Yan GH, Huang XM, Wang YQ, et al. Effects of heat treatment on mechanical properties of H13 steel. Metal Sci Heat Treat. 2010;52:393–395.
  • Li ZQ, Wen Z, Su FY, et al. Austenite grain growth behavior of a GCr15 bearing steel cast billet in the homogenization heat treatment process. J Mater Res. 2016;31:2105–2113.
  • Purdy GR, Kirkaldy JS. Homogenization by diffusion. Metall Trans. 1971;2:371–378.
  • Zhao WL, Ma QX. Microstructural evolution of as-cast 3.5%NiCrMoV steel containing centimeter-scale grain structure during reheating and plastic deformation. Mater Trans. 2014;55:1568–1574.
  • Li JQ, An JM, Qu ZK, et al. Effects of solution heat treatment on the microstructure and hardness of Mg–5Li–3Al–2Zn–2Cu alloy. Mater Sci Eng A. 2010;527:7138–7142.
  • Tosha K. Influence of residual stresses on the hardness number in the affected layer produced by shot peening. Second Asia–Pacific Forum on Precision Surface Finishing and Deburring Technology, Seoul, Korea. 2002;48.
  • Odnobokova M, Kipelova A, Belyakov A, et al. Microstructure evolution in a 316L stainless steel subjected to multidirectional forging and unidirectional bar rolling. IOP Conf Ser: Mater Sci Eng. 2014;63:12060.
  • Kotan H, Saber M, Koch CC, et al. Effect of annealing on microstructure, grain growth, and hardness of nanocrystalline Fe–Ni alloys prepared by mechanical alloying. Mater Sci Eng A. 2012;552:310–315.
  • Ebrahimian A, Ghasemi Banadkouki SS. Mutual mechanical effects of ferrite and martensite in a low alloy ferrite-martensite dual phase steel. J Alloys Compd. 2017;708:43–54.
  • Li YJ, Choi PP, Goto S, et al. Evolution of strength and microstructure during annealing of heavily cold-drawn 6.3 GPa hypereutectoid pearlitic steel wire. Acta Mater. 2012;60:4005–4016.
  • Liu JB, Chen CX, Feng Q, et al. Dislocation activities at the martensite phase transformation interface in metastable austenitic stainless steel: an in-situ TEM study. Mater Sci Eng A. 2017;703:236–243.
  • Liang JH, Zhao ZZ, Tang D, et al. Improved microstructural homogeneity and mechanical property of medium manganese steel with Mn segregation banding by alternating lath matrix. Mater Sci Eng A. 2018;711:175–181.
  • Masuda T, Sauvage X, Hirosawa S, et al. Achieving highly strengthened Al–Cu–Mg alloy by grain refinement and grain boundary segregation. Mater Sci Eng A. 2020;793:139668.

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.