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Number of results
2018 | 133 | 3 | 707-709

Article title

NDT of Rating Impact of Laser Padding on the Surface Layer

Content

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EN

Abstracts

EN
The article presents the problem of quality control the paramagnetic material of weld overlays laser made on ferro- and paramagnetic materials (steels, cast iron). To assess the quality of weld overlays paramagnetic material, and also the impact of overheating, besides laboratory researches on Keyence optical microscope, used measurement of existing magnetization of magnetic field distribution. Examples of test results by magnetic memory of metals are presented. It has been found, that is expedient use magnetic methods to assess the quality the microstructure of laser pad welded surface layer (influence of heat generation, microstructure changes, chemical composition and own stresses).

Keywords

Contributors

author
  • Military University of Technology in Warsaw, S. Kaliskiego 2, 00-908 Warszawa, Poland
author
  • Air Force Institute of Technology, Księcia Bolesława 6, 01-494 Warszawa, Poland
author
  • Air Force Institute of Technology, Księcia Bolesława 6, 01-494 Warszawa, Poland

References

  • [1] Y.Y. Özbek, T.Gökkaya, C.V. Yavaşcan, Acta. Phys. Pol. A 129, 588 (2016), doi: 10.12693/APhysPolA.129.588
  • [2] B. Grabas, Sz. Tofil, W. Napadłek, Arch. Metall. Materials 61, 1163 (2016), doi: 10.1515/amm-2016-01942016
  • [3] W. Napadłek, Materials Testing 57, (2015), doi: 10.3139/120.110788
  • [4] D.J. Craik, M.J. Wood, J. Appl. Phys. D: Appl. Phys. 3, 1009 (1970)
  • [5] The Web's Largest Open Access Database of Nondestructive Testing (NDT) http://ndt.net/search/docs.php3
  • [6] M. Witos, M. Zieja, B. Kurzyk, e-J. Nondestr. Test. 21, (2015) http://ndt.net/article/aero2015/~papers/We_4_A_3_Witos1.pdf
  • [7] W-K. Tse, A.H. MacDonald, Phys. Rev. B 84, 205327 (2011), doi: 10.1103/PhysRevB.84.205327
  • [8] C. Krell et al. J. Magn. Magn. Mater. 215, 63 (2000), doi: 10.1016/S0304-8853(00)00067-6
  • [9] S. Woodford, PhD Thesis, Kapstadt, South Afrika 2008
  • [10] M. Iwaniec et al., Solid State Phenomena 208, 70 (2014), doi: 10.4028/www.scientific.net/SSP.208.70
  • [11] M. Stolzenberg et al., Online material Characterisation at Strip Production(OMC), Final report EUR25879EN Research Fund for Coal, Steel, Directorate-General for Research, Innovation European Commission, 2014
  • [12] G. Dobmann in: Nuclear Power - Control, Reliability, Human Factor, Ed. P. Tsvetkov, INTECH, Rijeka 2011, p. 311, doi: 10.5772/17581
  • [13] Matesy GmbH - Magnetische Technologien und Systeme http://matesy.de
  • [14] K. Barczak el al., Acta. Phys. Pol. A 118, 1090 (2010), doi: 10.12693/APhysPolA.118.1090
  • [15] P. Gretchen, PhD Thesis, University of Kentucky 2014, Paper 15
  • [16] M. Witos, PIRE (2014), doi: 10.13140/RG.2.1.1169.6167
  • [17] Impedance Measurement Handbook. A Guide to Measurement Technology, Techniques, 6th ed., Keysight Technologies, 2016
  • [18] Z.H. Żurek, RLC circuit for material testing, NDT, KOMEL 2015
  • [19] Z.H. Żurek, M. Witos, e-J. Nondestr. Test. 21 (2016) http://ndt.net/?id=19111
  • [20] M. Witos, M. Roskosz, K. Fryczowski, Autobusy: technika, eksploatacja, systemy transportowe 12, (2016), (in Polish)

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.bwnjournal-article-appv133n3p113kz
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