138
Views
1
CrossRef citations to date
0
Altmetric
Translated Articles

Microstructure and texture of friction stir welds in low carbon steel using prior austenite reconstruction method

, , , &

References

  • Thomas W, Nicholas E, Needham J, et al.: IMPROVEMENTS RELATING TO FRICTION WELDING. International Patent Application No. PCT/GB92/02203; 1991.
  • Fukuda T. Friction stir welding (FSW) process. J Jap Weld Soc. 2000;69(7):560–564. (in Japanese). .
  • Dawes C, Thomas W. Friction stir process welds aluminium alloys: the process produces low-distortion, high-quality, low-cost welds on aluminium. Weld J. 1996;75(3):41–45.
  • Park S, Sato Y, Kokawa H. Effect of micro-texture on fracture location in friction stir weld of Mg alloy AZ61 during tensile test. Scripta Materiallia. 2003;49(2):161–165.
  • Reynolds A, Tang W, Posada M, et al. Friction stir welding of DH36 steel. Sci Tec Weld Joining. 2003;8(6):455–460.
  • Fujii H, Cui L, Tsuji N, et al. Friction stir welding of carbon steels. Mater Sci Eng A. 2006;429(1–2):50–57.
  • Cui L, Fujii H, Tsuji N, et al. Friction stir welding of a high carbon steel. Scr Mater. 2007;56(7):637–640.
  • Cui L, Fujii H, Tsuji N, et al. Transformation in stir zone of friction stir welded carbon steels with different carbon contents. ISIJ Inter. 2007;47(2):299–306.
  • Konkol P, Mathers C, Johnson R, et al. Friction stir welding of HSLA-65 steel for shipbuilding. J Ship Prod. 2003;19(3):159–164.
  • Ueji R, Fujii H, Cui L, et al. Friction stir welding of ultrafine grained plain low-carbon steel formed by the martensite process. Mater Sci Eng A. 2006;423(1–2):324–330.
  • Fujii H, Ueji R, Takada Y, et al. Friction stir welding of ultrafine grained interstitial free steels. Mater Trans. 2006;47:239–242.
  • Matsushita M, Kitani Y, Ikeda R, et al. Microstructure and toughness of friction stir weld of thick structural steel. ISIJ Inter. 2012;52(7):1335–1341.
  • Matsushita M, Kitani Y, Ikeda R, et al. Development of friction stir welding (FSW) of high strength steel sheet. Q J Jpn Weld Soc. 2009;27(4):360–370. (in Japanese).
  • Aydin H, Nelson T. Microstructure and mechanical properties of hard zone in friction stir welded X80 pipeline steel relative to different heat input. Mater Sci Eng A. 2013;586:313–322.
  • Nelson T, Rose S. Controlling hard zone formation in friction stir processed HSLA steel. J Mater Process Technol. 2016;231:66–74.
  • Sato Y, Nelson T, Sterling C. Recrystallization in type 304L stainless steel during friction stirring. Acta Materialia. 2005;53(3):637–645.
  • Field D, Nelson T, Hovanski Y, et al. Heterogeneity of crystallographic texture in friction stir welds of aluminium. Metall Mater Trans A. 2001;32A:2869–2877.
  • Fonda R, Bingert J, Colligan K. Development of grain structure during friction stir welding. Scr Mater. 2004;51(3):243–248.
  • Miyamoto G, Iwata N, Takayama N, et al. Mapping the parent austenite orientation reconstructed from the orientation of martensite by EBSD and its application to ausformed martensite. Acta Materialia. 2010;58(19):6393–6403.
  • Miyamoto G, Iwata N, Takayama N, et al. Reconstruction of parent austenite grain structure based on crystal orientation map of bainite with and without ausforming. ISIJ Inter. 2011;51(7):1174–1178.
  • Miyamoto G, Iwata N, Takayama N, et al. Quantitative analysis of variant selections in ausformed lath martensite. Acta Materialia. 2012;60(3):1139–1148.
  • Ouchi C. Development of steel plates by intensive use of TMCP and direct quenching processes. ISIJ Inter. 2001;41(6):542–553.
  • Shikanai N, Mitao S, Endo S. Recent development in microstructural control technologies through the thermo-mechanical control process (TMCP) with JFE steel’s high-performance plates. JFE Tech Rep. 2008;11:1–6.
  • Morinaga M, Furuhara T, Toda H. Processing and structures of metallic materials. Tokyo, Japan: Kyoritsu Shuppan; 2010. p. 78–100. (in Japanese).
  • Humphreys F, Hatherly H. Control of recrystallisation and metal structure: from nano and micro level basics to practical technologies. Second Revised ed. Shizoka, Japan: Shizuoka Shinbunsha; 2005. p. 55–66. (in Japanese).
  • Nishizawa T. The thermodynamics of microstructures. Mat Series. 2005;2:135–148. (in Japanese).
  • Enomoto M. Nucleation of phase transformations at intragranular inclusions in steel. Met Mater. 1998;4(2):115–123.
  • Hong S, Kang K, Park C. Strain-induced precipitation of NbC in Nb and Nb–Ti microalloyed HSLA steels. Scr Mater. 2002;46(2):163–168.
  • Nunes AC Jr. Metal flow in friction stir welding. Materials Science and Technology 2006/ASM International, The Minerals, Metals and Materials Society; Cincinnati, US; 2006 October.

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.