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Translated Articles

In-process monitoring of welding quality by robotic laser ultrasonic measurement system using microchip laser

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References

  • Lopeza A, Bacelar R, Pires I, et al. Non-destructive testing application of radiography and ultrasound for wire and arc additive manufacturing. Addit Manuf. 2018;21:298–306.
  • Kato K. The most up-to-date radiographic examination technology. J Jap Weld Soc. 2001;70(6):28–31. (in Japanese).
  • Morisada Y, Imaizumi T, Fujii H. Clarification of defect formation mechanism in friction stir welding by X-ray radiography. J Jap Weld Soc. 2014;32(1):31–37. (in Japanese).
  • Hernandez-Valle F, Dixon S. Initial test for designing a high temperature EMAT with pulsed electromagnet. NDT E Int. 2010;43:171–175.
  • Gan TH, Hutchins DA. Air-coupled ultrasonic tomographic imaging of high-temperature flames. IEEE Trans Ultrason Ferroelectr Freq Control. 2003;50(9):1214–1218.
  • Scruby CB, Drain LE. Laser ultrasonic, techniques and applications. Bristol: Adam Hilger; 1990. p. 447.
  • Hutchins DA. Ultrasonic generation by pulsed lasers. Phys Acoust. 1988;18:21–123.
  • Izumi Y, Akamatsu S, Takahashi I. Thickness measurement for steel by the laser ultrasonic method. Dyn Des Conf. 2006;258:1–4. (in Japanese).
  • Ochiai M, Butsuen T, Miura T, et al. Sizing of micro cracks using laser-induced broad-band surface waves. J At Energy Soc Jpn. 2001;43(3):275–281. (in Japanese).
  • Zamiri S, Reitinger B, Grun H, et al. Laser ultrasonic velocity measurement for phase transformation investigation in titanium alloy. 2013 IEEE International Ultrasonic Symposium (IUS); 2013. p. 683–686.
  • Karabutov A, Devichensky A, Ivochkin A, et al. Laser ultrasonic diagnostics of residual stress. Ultrasonics. 2008;48:631–635.
  • Yamamoto S, Hoshi T, Miura T, et al. Defect detection in thick weld structure using welding in-process laser ultrasonic testing system. Mater Trans. 2014;55(7):998–1002.
  • Otaki S, Matsuida T, Nomura K, et al. In-situ measurement of weld quality during MAG welding using laser ultrasonic. Q J Jpn Weld Soc. 2020;38(1):11–18. (in Japanese).
  • Nomura K, Otaki S, Kita R, et al. In-situ detection of weld defect during the welding process by laser ultrasonic technique. 2019 Proceedings of Meetings on Acoustics, 38; 2019. p. 030016.
  • Taira T. 100 MW peak power palm-top size microchip lasers. OPTRONICS. 2018;37(4):156–161. (in Japanese).
  • Matsuida T, Kita R, Otaki S, et al. Development of in-situ measurement system with laser ultrasonic technique using microchip laser. Preprints of the National Meeting of JWS, 104; 2019. p. 106–107 (in Japanese).
  • Wartelle A, Pouet B, Breugnot S. Industrial laser-ultrasonic receivers: recent progress in multi-channel random-quadrature interferometers. Presented at the 2012 FAR East NDT Forum in Hefei, China.
  • Müller W, Schmitz V, Schäfer G. Reconstruction by The Synthetic Aperture Focussing Technique (SAFT). Nucl Eng Des. 1986;94(3):393–404.
  • Mihara T. Developments in ultrasonic inspection. J Vac Soc Jpn. 2011;54(1):39–46. (in Japanese).
  • An YK, Park B, Sohn H. Complete noncontact laser ultrasonic imaging for automated crack visualization in a plate. Smart Mater Struct. 2013;22(2):17.
  • Park B, An YK, Sohn H. Visualization of hidden delamination and debonding in composites through noncontact laser ultrasonic scanning. Compos Sci Technol. 2014;100:1018.
  • Kurz W, Lux B. Die Schallgeschwindigkeit von Eisen und Eisenlegierungen im festen und flüssigen Zustand. High Temp High Pressures. 1969;1:387–399.
  • Nomura K, Matsuida T, Kita R, et al. Monitoring technique of weld quality using laser ultrasonic IV (Development of robotic measurement system with microchip laser). Proc Jpn Soc Mech Eng. 2019; J40144. (in Japanese).
  • Miller GF, Pursey H. On the partition of energy between elastic waves in a semi-infinite solid. Proc R Soc A. 1954;223:521.
  • Lord AE, Acoust J. Geometric diffraction loss in longitudinal- and shear-wave attenuation measurements in an isotropic half-space. J Acoust Soc Am. 1966;39:650.

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