The Influence of the Surface Micro-structure Change on the Stainless Steel Effective Thermal Diffusivity
Author:
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics
Link
https://link.springer.com/content/pdf/10.1007/s10765-022-03072-3.pdf
Reference48 articles.
1. A. Somer, A. Gonçalves, T.V. Moreno, G.K. Cruz, M.L. Baesso, N.G.C. Astrath, A. Novatski, Photoacoustic signal with two heating sources: Theoretical predictions and experimental results for the open photoacoustic cell technique. preprint preprint (2020)
2. A. Somer, F. Camilotti, G. Costa, C. Bonardi, A. Novatski, A. Andrade, V. Kozlowski Jr., G. Cruz, The thermoelastic bending and thermal diffusion processes influence on photoacoustic signal generation using open photoacoustic cell technique. J. Appl. Phys. 114, 063503 (2013)
3. A. Somer, F. Camilotti, G. Costa, A. Jurelo, A. Assmann, G. De Souza, O. Cintho, C. Bonardi, A. Novatski, G. Cruz, Effects of thermal oxidation on the effective thermal diffusivity of titanium alloys. Journal of Physics D: Applied Physics 47, 385306 (2014)
4. D.K. Markushev, D.D. Markushev, S.M. Aleksić, D.S. Pantić, S.P. Galović, D.M. Todorović, J. Ordonez-Miranda, Experimental photoacoustic observation of the photogenerated excess carrier influence on the thermoelastic response of n-type silicon. Journal of Applied Physics 128, 095103 (2020). https://doi.org/10.1063/5.0015657
5. N. Jovančić, D. Markushev, D. Markushev, S. Aleksić, D. Pantic, D. Korte, M. Franko, Thermal and elastic characterization of nanostructured fe2o3 polymorphs and tio2-coated fe2o3 using open photoacoustic cell. International Journal of Thermophysics 41(2020). https://doi.org/10.1007/s10765-020-02669-w
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