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Experiments

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Book cover Powder Consolidation Using Cold Spray

Abstract

The experimental procedure is described in details in this chapter. Surface treatments, including cold spray coating and shot peening (conventional and severe) are explained. Different experimental techniques including microstructural observation, nano/micro-hardness measurement, X-ray diffraction measurement of residual stress, roughness measurement, rotating bending fatigue test, coating bond strength and cohesion strength tests and contact angle measurement are discussed.

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References

  1. Y. Todaka, M. Umemoto, K. Tsuchiya, Comparison of nanocrystalline surface layer in steels formed by air blast and ultrasonic shot peening. Mater. Trans. 45, 376–379 (2004)

    Article  Google Scholar 

  2. A. Moridi, S.M. Hassani-Gangaraj, S. Vezzú, L. Trško, M. Guagliano, Fatigue behavior of cold spray coatings: the effect of conventional and severe shot peening as pre-/post-treatment. Surf. Coat. Technol. 283, 247–254 (2015)

    Article  Google Scholar 

  3. S.M. Hassani-Gangaraj, A. Moridi, M. Guagliano, From conventional to severe shot peening to generate nanostructured surface layer: a numerical study. IOP Conf. Series: Mater. Sci. Eng. 63(1), 12038 (2014)

    Article  Google Scholar 

  4. Š. Michna, I. Lukáč, P. Louda, J. Drápala, R. Koený, A. Miškufová, Aluminium materials and technologies from A to Z (ADIN, 2007)

    Google Scholar 

  5. G. F. Vander Voort, Metallography, Principles and Practice (ASM International, 1984)

    Google Scholar 

  6. A.C. Fischer-Cripps, Nanoindentation, 2nd edn. (Springer, New York, 2004)

    Google Scholar 

  7. S. Baiker, P. McIntyre, Shot Peening: A Dynamic Application and Its Future (Metal finishing News, 2009)

    Google Scholar 

  8. P. Prevey, X-Ray Diffraction residual stress techniques. Technical report, 1986

    Google Scholar 

  9. http://www.mahr.de. Accessed Feb. 2015

  10. 1st Ed.;. ISO 4278. Geometrical product specifications (GPS) surface texture: profile method- terms, definitions and surface texture parameters. Technical report, 1997

    Google Scholar 

  11. G. Sinclair, T. Dolan, Effect of stress amplitude on statistical variability in fatigue life of 75S-T6 aluminum alloy. Trans. Am. Soc. Mech. Eng. 75, 867–872

    Google Scholar 

  12. K. Sobczyk, B.F.J. Spencer, Random Fatigue: From Data to Theory (Academic Press, Incorporated, 1992)

    MATH  Google Scholar 

  13. W.J. Dixon, A.M. Mood, A method for obtaining and analyzing sensitivity data. J. Am. Statis. Assoc. 43, 109–126 (1948)

    Article  MATH  Google Scholar 

  14. R. Little, E. Jebe, Statis. Des. Fatigue Exper. (Wiley, New York, 1975)

    Google Scholar 

  15. S.M. Hassani-Gangaraj, A. Moridi, M. Guagliano, A. Ghidini, Nitriding duration reduction without sacrificing mechanical characteristics and fatigue behavior: the beneficial effect of surface nano-crystallization by prior severe shot peening. Mater. Des. 55, 492–498 (2014)

    Article  Google Scholar 

  16. S.M. Hassani-Gangaraj, A. Moridi, M. Guagliano, A. Ghidini, M. Boniardi, The effect of nitriding, severe shot peening and their combination on the fatigue behavior and micro-structure of a low-alloy steel. Int. J. Fatigue 62, 67–76 (2013)

    Article  Google Scholar 

  17. N. Habibi, S.M.H-Gangaraj, G.H. Farrahi, G.H. Majzoobi, A.H. Mahmoudi, M. Daghigh, A. Yari, A. Moridi, The effect of shot peening on fatigue life of welded tubular joint in offshore structure. Mater. Des. 36, 250–257 (2012)

    Google Scholar 

  18. S.M. Hassani-Gangaraj, A. Moridi, M. Guagliano, Fatigue properties of a low-alloy steel with a nano-structured surface layer obtained by severe mechanical treatments. Key Eng. Mater. 577–578, 469–472 (2013)

    Article  Google Scholar 

  19. W.J. Dixon, The up-and-down method for small samples. J. Am. Stat. Assoc. 60, 967–978 (1965)

    Article  MathSciNet  Google Scholar 

  20. A. Moridi, S.M. Hassani-Gangaraj, M. Guagliano, S. Vezzu, Effect of cold spray deposition of similar material on fatigue behavior of Al 6082 alloy. Fract. Fatigue 7, 51–57 (2014)

    Google Scholar 

  21. A. Moridi, Cold Spray Coating: Process Evaluation and Wealth of Applications; From Structural Repair to Bioengineering. Ph.D. thesis, 2015

    Google Scholar 

  22. A. Moridi, S. M. Hassani-Gangaraj, M. Guagliano, On fatigue behavior of cold spray coating, MRS Proceedings, vol. 1650, pp. mrsf13–1650–jj05–03 (Cambridge University Press, 2014)

    Google Scholar 

  23. ASTM C633: Standard Test Method for Adhesion or Cohesion Strength of Thermal Spray Coatings. Technical report, 2012

    Google Scholar 

  24. T. Schmidt, F. Gaertner, H. Kreye, Tubular-Coating-Tensile-Test. Technical report, 2006

    Google Scholar 

  25. A. Moridi, S.M. Hassani-Gangaraj, S. Vezzù, M. Guagliano, Number of passes and thickness effect on mechanical characteristics of cold spray coating. Proc. Eng. 74, 449–459 (2014)

    Article  Google Scholar 

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Correspondence to Atieh Moridi .

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Moridi, A. (2017). Experiments. In: Powder Consolidation Using Cold Spray. SpringerBriefs in Applied Sciences and Technology(). Springer, Cham. https://doi.org/10.1007/978-3-319-29962-4_2

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  • DOI: https://doi.org/10.1007/978-3-319-29962-4_2

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  • Publisher Name: Springer, Cham

  • Print ISBN: 978-3-319-29961-7

  • Online ISBN: 978-3-319-29962-4

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