352
Views
8
CrossRef citations to date
0
Altmetric
Research Article

Some applications of interlayer explosive welding

, &
Pages 345-360 | Received 12 Apr 2021, Accepted 09 Jun 2021, Published online: 24 Jun 2021

References

  • He Y, Zhang S, Ding Q, et al. Comprehensive investigation of microstructural inhomogeneity in the bonding zone of explosive-welded AISI 410S/A283GrD composite. Compos Interfaces. 2021;1–21. DOI:https://doi.org/10.1080/09276440.2021.1890426
  • Hanliang L, Ning L, Yanlong C, et al. Experimental and numerical simulation study of Fe-based amorphous foil/Al-1060 composites fabricated by an underwater explosive welding method. Compos Interfaces. 2020;1–17. DOI:https://doi.org/10.1080/09276440.2020.1843868
  • Sun Z, Shi C, Wu X, et al. Comprehensive investigation of effect of the charge thickness and stand-off gap on interface characteristics of explosively welded TA2 and Q235B. Compos Interfaces. 2020;27(11):977–993.
  • Greenberg BA, Ivanov MA, Inozemtsev AV, et al. Comparative characterisation of interfaces for two-and multi-layered Cu-Ta explosively welded composites. Compos Interfaces. 2020;27(7):705–715.
  • Chen X, Inao D, Tanaka S, et al. Explosive welding of Al alloys and high strength duplex stainless steel by controlling energetic conditions. J Manuf Process. 2020;58:1318–1333.
  • Hokamoto K, Izuma T, Fujita M. New explosive welding technique to weld. Metall. Trans A. 1993;24(10):2289–2297.
  • Han JH, Ahn JP, Shin MC. Effect of interlayer thickness on shear deformation behavior of AA5083 aluminum alloy/SS41 steel plates manufactured by explosive welding. J Mater Sci. 2003;38(1):13–18.
  • HSFL Carvalho G, Galvão I, Mendes R, et al. Aluminum-to-steel cladding by explosive welding. Metals. 2020;10(8):1062.
  • Carvalho G, Galvão I, Mendes R, et al. Explosive welding of aluminium to stainless steel using carbon steel and niobium interlayers. J Mater Process Tech. 2020;283:116707.
  • Corigliano P, Crupi V, Guglielmino E, et al. Full-field analysis of AL/FE explosive welded joints for shipbuilding applications. Mar. Struct. 2018;57:207–218.
  • Habib MA, Keno H, Uchida R, et al. Cladding of titanium and magnesium alloy plates using energy-controlled underwater three layer explosive welding. J Mater Process Tech. 2015;217:310–316.
  • Fang Z, Shi C, Sun Z, et al. Influence of interlayer technique on microstructure and mechanical properties of Ti/Al cladding plate manufactured via explosive welding. Mater Res Express. 2019;6(10):1065f9.
  • Wu X, Shi C, Fang Z, et al. Comparative study on welding energy and Interface characteristics of titanium‑aluminum explosive composites with and without interlayer. Mater Design. 2021;197:109279.
  • Wang X, Zhao Z, Wang J. et al. Influences of transition layer on shear strength of Zr/steel explosive clad plate. Explo. Shock Waves. 2014;34(6):685–690.
  • Lazurenko D, Bataev I, Mali V, et al. Structural transformations occurring upon explosive welding of alloy steel and high-strength titanium. Phys. Met. Metallogr+. 2018;119(5):469–476.
  • Rosenthal I, Miriyev A, Tuval E, et al. Characterization of explosion-bonded Ti-alloy/steel plate with Ni interlayer. Metallogr., Microst., Aanl. 2014;3(2):97–103.
  • Mahmood Y, Chen P, Bataev I, et al. Experimental and numerical investigations of interface properties of Ti6Al4V/CP-Ti/Copper composite plate prepared by explosive welding. Def Technol. 2020. DOI:https://doi.org/10.1016/j.dt.2020.09.003
  • Chen X, Li X, Wang X, et al. Bonding mechanism of explosive compaction–welding sintering. J Manuf Process. 2019;46:1–15.
  • Mori A, Tanaka S, Hokamoto K. Selected papers from the 31st international congress on high-speed imaging and photonics. Osaka: Japan; 2016 Nov 710.
  • Akram S, Jaffery SHI, Khan M, et al. Numerical and experimental investigation of Johnson–Cook material models for aluminum (Al 6061-T6) alloy using orthogonal machining approach. Adv Mech Eng. 2018;10(9):1–14.
  • Johnson G, Cook W 7th International Symposium on Ballistics;1969.
  • Feng F, Huang S, Meng Z, et al. A constitutive and fracture model for AZ31B magnesium alloy in the tensile state. Mater Sci Eng A. 2014;594:334–343.
  • Yan M, Shao H. Study on high-speed drilling of SUS304 based on FEA. Adv Mat Res. 2011;188:529–534.
  • Miyoshi T. Flexural Behavior of lean duplex stainless steel welded I-section. Memoirs of National Institute of Technology, Akashi College. 2018;60:1–8.
  • Gamin Y, Akopyan T, Koshmin A, et al. Investigation of the microstructure evolution and properties of A1050 aluminum alloy during radial-shear rolling using FEM analysis. Int J Adv Manuf Tech. 2020;108(3):695–704.
  • SUS304 Stainless Steel Material Properties, Chemical Composition, Meaning [Internet]. The world material; Available from https://www.theworldmaterial.com/sus304-stainless-steel-material/.
  • 6061 Aluminum vs. 5052 Aluminum - Differences in Properties, Strength and Uses [Internet]. New York (NY), Thomas; [cited 2021 June 3] Available from: https://www.thomasnet.com/articles/metals-metal-products/6061-aluminum-vs-5052-aluminum/
  • De Rosset WS. Analysis of explosive bonding parameters. Mater Manuf Process. 2006;21(6):634–638.
  • List of the standards for commercially pure titanium [Internet].  Tokyo: Nippon steel; Available from:https://www.nipponsteel.com/product/catalog_download/pdf/T001en.pdf
  • Chen X, Inao D, Li X, et al. Comparison study on explosive welding of pure titanium/SUS 304 austenitic stainless steel and pure titanium/SUS 821L1 duplex stainless steel. T. Nonferr. Metal. Soc. 2021;( Accepted).
  • Chen X, Sun W, Li X, et al. Experimental and numerical studies on W–Cu functionally graded materials produced by explosive compaction–welding sintering. Fusion Eng Des. 2018;137:349–357.
  • AZ31B [Internet]. Tokyo: Nipponkinzoku; [cited 2021 June 3]. Available from: https://www.nipponkinzoku.co.jp/products/az31b

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.