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A Mathematical Model of Infrared Heating of Auto Body Parts during Restoration by a Polymer Material

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Abstract

The results of theoretical studies on the power balance of infrared radiation during heating of type II auto body parts is provided. A mathematical model of heating of auto body parts coated by a polymer during infrared processing has been simulated, and comparative calculation and experimental data on temperature and time of infrared heating of bearing shields of electric motors are presented. The consistency of the mathematical model has been demonstrated. The error in determining the temperature and heating time did not exceed 5%.

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REFERENCES

  1. A. V. Kolomeichenko, I. N. Kravchenko, A. F. Puzryakov, V. N. Logachev, N. V. Titov, “Recovery technology with hardening of machine parts using microarc oxidation,” Stroit. Dorozhn. Mash., No. 10, 16–21 (2014).

  2. A. S. Kononenko, Doctoral Dissertation in Engineering (Moscow, 2012).

  3. S. Yu. Zhachkin, M. N. Krasnova, N. A. Pen’kov, and A. I. Krasnov, “Modeling the mechanical impact of a tool in producing galvanic composite coatings,” Tr. GOSNITI 120, 130–134 (2015).

    Google Scholar 

  4. A. S. Kononenko and K. G. Dmitrakov, “Improving the resistance of cold cured polymer composites to working fluids using nanomaterials,” Mezhdunar. Tekh.-Ekon. Zh., No. 1, 89–94 (2015).

  5. V. V. Kurchatkin, Doctoral Dissertation in Engineering (Moscow, 1989).

  6. R. I. Li, Polymer Composite Materials for Fixing Rolling Bearings in Machine Components: Monograph (Izd. Lipetskogo Gos. Tekh. Univ., Lipetsk, 2017).

    Google Scholar 

  7. R. I. Li, F. A. Kirsanov, and M. R. Kiba, “Technology and equipment for high-precision polymer restoration of fitment holes in automotive housing parts,” Polym. Sci., Ser. D 9, 312–316 (2016).

    CAS  Google Scholar 

  8. R. I. Li and A. V. Mironenko, “Restoration of body parts of automotive housing parts by polymer-polymer composition,” Mir Transp. Tekhnol. Mash., No. 4, 9–15 (2016).

  9. R. I. Li, Technologies for Restoration and Hardening of Automotive Housing Parts (Izd. Lipetskogo Gos. Tekh. Univ., Lipetsk, 2014).

    Google Scholar 

  10. D. V. Mashin, Candidate’s Dissertation in Engineering (Michurinsk, 2013).

  11. A. A. Kolesnikov, Candidate’s Dissertation in Engineering (Orel, 2017).

  12. V. V. Kurchatkin, N. F. Tel’nov, K. A. Achkasov, and A. N. Batishchev, Reliability and Machine Repair, Ed. by V. V. Kurchatkin (Kolos, Moscow, 2000) [in Russian].

    Google Scholar 

  13. V. A. Kuzovlev, Technical Thermodynamics and Basics of Heat Transfer, Ed. by L. R. Stotskii (Vyssh. Shk., Moscow, 1983) [in Russian].

    Google Scholar 

  14. D. V. Sivukhin, General Physics Course, Vol. 2: Thermodynamics and Molecular Physics (Nauka, Moscow, 2005) [in Russian].

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Funding

This study was carried out with the financial support of the Russian Foundation for Basic Research and the Administration of Lipetsk Oblast in the framework of scientific project no. 19-48-480008/19.

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Correspondence to R. I. Li.

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The authors declare that they have no conflicts of interest.

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Translated by D. Marinin

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Li, R.I., Psarev, D.N. & Bykonya, A.N. A Mathematical Model of Infrared Heating of Auto Body Parts during Restoration by a Polymer Material. Polym. Sci. Ser. D 13, 172–176 (2020). https://doi.org/10.1134/S199542122002015X

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  • DOI: https://doi.org/10.1134/S199542122002015X

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