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Original Articles

Misorientation dependence of grain boundary migration in advanced ultra-supercritical Ni-based superalloy

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Pages 607-611 | Received 03 Aug 2017, Accepted 06 Nov 2017, Published online: 12 Dec 2017

References

  • Lee T-H, Suh H-Y, Han S-K, et al. Effect of a heat treatment on the precipitation behavior and tensile properties of alloy 690 steam generator tubes. J Nucl Mater. 2016;479:85–92. doi: 10.1016/j.jnucmat.2016.06.038
  • Jinlong L, Tongxiang L, Chen W, et al. Comparison of corrosion behavior between coarse grained and nano/ultrafine grained alloy 690. Appl Surf Sci. 2016;360:403–408. doi: 10.1016/j.apsusc.2015.11.031
  • Yin H, Gao Y, Gu Y. Evolution of the microstructure and microhardness of the welding joint of IN 740H alloy with IN 617 as filler metal. Mater Charact. 2017;127:288–295. doi: 10.1016/j.matchar.2017.01.011
  • Dang YY, Zhao XB, Yuan Y, et al. Predicting long-term creep-rupture property of Inconel 740 and 740H. Mater High Temp. 2016;33:1–5. doi:10.1179/1878641315Y.0000000010.
  • Jiang H, Dong JX, Zhang MC. Manufacture process design of Inconel 617B superheater tubes for ultra-supercritical power plants. Mater Res Innov. 2015;18:S4–S369.
  • Sims CT, Stoloff NS, Hagel WC. Superalloys II. New York: Materialsence; 1987.
  • Lin YC, Li L, He D-G, et al. Effects of pre-treatments on mechanical properties and fracture mechanism of a nickel-based superalloy. Mater Sci Eng A. 2017;679:401–409. doi: 10.1016/j.msea.2016.10.058
  • Rahimi S, King M, Dumont C. Stress relaxation behaviour in IN718 nickel based superalloy during ageing heat treatments. Mater Sci Eng A. 2017;708:563–573. doi: 10.1016/j.msea.2017.09.116
  • He LZ, Zheng Q, Sun XF, et al. Effect of carbides on the creep properties of a Ni-base superalloy M963. Mater Sci Eng A. 2005;397:297–304. doi: 10.1016/j.msea.2005.02.038
  • Li PE, Zhang JS, Wang FG, et al. Influence of intergranular carbide density and grain size on creep of Fe-15Cr-25Ni alloys. Metall Trans A. 1992;23:1379–1381. doi: 10.1007/BF02665071
  • Tytko D, Choi P, Klöwer J, et al. Microstructural evolution of a Ni-based superalloy (617B) at 700°C studied by electron microscopy and atom probe tomography. Acta Mater. 2012;60:1731–1740. doi: 10.1016/j.actamat.2011.11.020
  • Yan C, Zhengdong L, Godfrey A, et al. Microstructure evolution and mechanical properties of Inconel 740H during aging at 750°C. Mater Sci Eng A. 2014;589:153–164. doi: 10.1016/j.msea.2013.09.076
  • Wadsworth J, Ruano OA, Sherby OD. Denuded zones, diffusional creep, and grain boundary sliding. Metall Mater Trans A. 2002;33:219–229. doi: 10.1007/s11661-002-0084-7
  • Hansen N, Juul J, Liu Y, et al. Microstructural and crystallographic aspects of recrystallization. Roskilde: Risoe National Lab; 1995.
  • Vandermeer RA, Juul Jensen D. The migration of high angle grain boundaries during recrystallization. Interface Sci. 1998;6:95–104. doi: 10.1023/A:1008668604733
  • Juul Jensen D. Growth rates and misorientation relationships between growing nuclei/grains and the surrounding deformed matrix during recrystallization. Acta Metall. 1995;43:4117–4129. doi: 10.1016/0956-7151(95)00111-8
  • Humphreys FJ, Hatherly M. Recrystallization and related annealing phenomena. 2nd ed. Amsterdam: Elsevier; 2004.
  • Beck PA, Sperry PR, Hu H. The orientation dependence of the rate of grain boundary migration. J Appl Phys. 1950;21:420–425. doi: 10.1063/1.1699676
  • Kronberg ML, Wilson FH. Secondary recrystallization in copper. Trans Met Soc AIME. 1949;185:501–514.
  • Kumar M, Schwartz AJ, King WE. Microstructural evolution during grain boundary engineering of low to medium stacking fault energy fcc materials. Acta Mater. 2002;50:2599–2612. doi: 10.1016/S1359-6454(02)00090-3
  • Lin YC, Wu X-Y, Chen X-M, et al. EBSD study of a hot deformed nickel-based superalloy. J Alloys Compd. 2015;640:101–113. doi: 10.1016/j.jallcom.2015.04.008
  • Yogo Y, Takeuchi H, Ishikawa T, et al. Strain-induced boundary migration of carbon steel at high temperatures. Scripta Mater. 2009;61:1001–1003. doi: 10.1016/j.scriptamat.2009.08.003
  • Liu T, Xia S, Li H, et al. The highly twinned grain boundary network formation during grain boundary engineering. Mater Lett. 2014;133:97–100. doi: 10.1016/j.matlet.2014.06.166
  • Kipfstuhl S, Faria SH, Azuma N, et al. Evidence of dynamic recrystallization in polar firn. J Geophys Res: Solid Earth. 2009;114(B5). doi: 10.1029/2008JB005583

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