78
Views
0
CrossRef citations to date
0
Altmetric
Translated Articles

Quantifying influence of LME inner cracks on joint strength of resistance spot weld

, &

References

  • Saito K. Current status of automotive high-tensile strength materials. Materia Japan. 2014;53(12):584–588.
  • Hayashi H. Changes in the application of high strength steel plates to car bodies. J JSTP. 2017;58(673):99–104.
  • Kudo D, Saito Y, Suzuki Y, et al. New infiniti QX50 body crash safety and application of high formability 980 MPa class ultra high tensile strength. J Soc Automot Eng Japan. 2018;72(12):67–70.
  • Takahashi M. 100 Years of thin sheet technology: thin steel sheets and manufacturing technologies that have moved along with the automotive industry. Tetsu-to-Hagane. 2014;100(1):82–93.
  • Senuma T, Takeshita T. The forefront of research and development of steel sheets for automobiles. J Japan Inst Metals. 2006;70(11):858–864.
  • Furusako S, Miyazaki Y, Hamatani H, et al. Effect of additive elements on strength and fracture behavior of spot welded L-joints. Quart J Japan Weld Soc. 2015;33(2):133–143.
  • Ikeda R. Spot welding technology for automotive thin steel sheets. Yosetsu Gakkai Shi. 2019;88(8):609. 32.
  • Jung G, Woo IS, Suh DW, et al. Liquid Zn assisted embrittlement of advanced high strength steels with different microstructures. Met Mater Int. 2016;22(2):187–195.
  • Kalashami AG, DiGiovanni C, Razmpoosh MH, et al. The effect of silicon content on liquid-meta l-embrittlement susceptibility in resistance spot welding of galvanized dual-phase steel. J Manuf Proc. 2020;57:370–379.
  • Sierlinger R, Gruber M. A cracking good story of liquid metal embrittlement during spot welding of advanced high strength steels. White Paper; voestalpine stahl GmbH. 2016;1–16.
  • Choi DY, Sharma A, Uhm SH, et al. Liquid metal embrittlement of resistance spot welded 1180 TRIP steel: effect of electrode force on cracking behavior. Met Mater Int. 2019;25(1):219–228.
  • Takashima K. LME cracking prevention technology for resistance spot welding of high strength thin steel plates. Yosetsu Gakkai Shi. 2021;90(7):492–496.
  • Bhattacharya D. Liquid metal embrittlement during resistant spot welding of Zn-coated high-strength steels. Mater Sci Technol. 2018;34(15):1809–1829.
  • Wintjes E, DiGiovanni C, He L, et al. Effect of multiple pulse resistance spot welding schedules on liquid metal embrittlement severity. J Manuf Sci Eng. 2019;141(10):101001.
  • Böhne C, Meschut G, Biegler M, et al. Avoidance of liquid metal embrittlement during resistance spot welding by heat input dependent hold time adaption. Sci Technol Weld Joining. 2020;25(7):617–624.
  • Böhne C, Meschut G, Biegler M, et al. Prevention of liquid metal embrittlement cracks in resistance spot welds by adaption of electrode geometry. Sci Technol Weld Joining. 2020;25(4):303–310.
  • DiGiovanni C, Han X, Powell A, et al. Experimental and numerical analysis of liquid metal embrittlement crack location. J Mater Eng Perform. 2019;28(4):2045–2052.
  • Wintjes E, DiGiovanni C, He L, et al. Quantifying the link between crack distribution and resistance spot weld strength reduction in liquid metal embrittlement susceptible steels. Weld World. 2019;63(3):807–814.
  • Han SC, Park HM, Uhm SH, et al. Evaluation of liquid metal embrittlement crack in resistance spot welds under intensive welding condition using industrial x-ray computed tomography and machine learning. Weld World. 2021;65(10):1887–1897.
  • Combined reports – AHSS implementation solutions: liquid metal embrittlement study, world auto steel. 2020. Available from: https://www.worldautosteel.org/projects/liquid-metal-embrittlement
  • Matsuyama K, Takahashi Y, Hasegawa K. Basics and practice of resistance welding. Tokyo, Japan: Sanpo Publications, Inc.; 2011. p. 132.
  • Kabasawa M. Resistance spot welding of thin steel sheet and aluminum alloy sheet. Tokyo, Japan: Sanpo Publications, Inc.; 2008. p. 57.

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.