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Researching the Influence of the Location Tool on the Treatment of Large Shafts Requiring Surface Shaping

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Book cover Proceedings of the 5th International Conference on Industrial Engineering (ICIE 2019) (ICIE 2019)

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Abstract

Rotary kilns for clinker production furnaces have lengths of up to 220 m and sleeve diameters of 6 m. The metal shell is up to 80 mm thick at the dress rings that transmit their mass on oven support rollers. Due to temperature variations (precipitation lining) shells can become deformed and the bent rotational axis of the furnace can resulting in a ring becoming trapped in this zone. In addition to rotating about its axis of rotation there is also movement in the plane of rotation, something that depends on the curvature of the axis of the furnace. This movement leads to the fact that the ring is not always situated on two rollers. Therefore, the side machine tool module, that is mounted on the imaginary axis of rotation of the furnace and is in connection with the ring is not always in contact with the cutting tool. Mathematical modeling of the processing is necessary to find the dependence of the ring.

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References

  1. Fedorenko TM, Fedorenko MA, Bondarenko YA (2009) Restore the health of the axles of the grinding mills with the use of a portable machine. Eng Technol 3:20–21

    Google Scholar 

  2. Fedorenko MA, Bondarenko YA, Fedorenko TM (2008) Machine for machining axles grinding millspatent for utility model. RUS Patent 75339. 07 Feb 2008

    Google Scholar 

  3. Bondarenko YA, Fedorenko MA (2003) Method of machining of large shafts without dismantling. Bondarenko Y.A., Fedorenko. Patent for invention RUS Patent 2242346. 05 May 2003

    Google Scholar 

  4. Bestuzheva OV, Fedorenko MA, Bondarenko YA (2016) Experimental study of the recovery of a surface of revolution of large parts of industrial equipment. Bull Belgorod State Technol Univ V. G. Shukhov 11:122–127

    Google Scholar 

  5. Fedorenko MA, Bondarenko YA, Sanina TM, Markova OV (2015) Auxiliary machine for machining internal surfaces of large cylindrical type. Eng Technol 11:27–28

    Google Scholar 

  6. Fedopenko TM, Fedopenko MA, Bondarenko YA (2009) Recovery of CAPP pumping mills with the application of a penable machine. Eng Technol 3:20–21

    Google Scholar 

  7. Fedorenko MA, Bondarenko YA, Fedorenko TM (2008) Study of the ensuring of the necessary roughness of the surface of large-size rotating parts by universal machine modules. Bull Belgorod State Technol Univ V.G. Shukhov 2:35–38

    Google Scholar 

  8. Fedorenko MA, Bondarenko JA, Pogonin AA (2018) Impact of oscillations of shafts on machining accuracy using non-stationary machines In the collection. In: IOP conference series: materials science and engineering 11. CEP. In: International conference on mechanical engineering, automation and control systems 2017—Processing Equipment, Mechanical Engineering Processes and Metals Treatment, 042030

    Google Scholar 

  9. Bondarenko YA (2004) Special machine for treatment of dacing large shaft, equipped with a tool self installation device. STIN 1:36

    Google Scholar 

  10. Bondarenko JA, Fedorenko MA, Pogonin AA (2018) Research of the value of linear distortion of renewable surface of part during rotary processing of bulky items without dismantling unit. In the collection. In: IOP conference series: materials science and engineering 11. CEP. International conference on mechanical engineering, automation and control systems 2017—processing equipment, mechanical engineering processes and metals treatment, 042031

    Article  Google Scholar 

  11. Beloborodov SM, Bondarenko YA, Vereshchak AS et al (2012) Technological support of quality and resource in manufacturing, assembling, repair and restoring. The 120th anniversary of the birth of the outstanding aircraft designer, Hero of Socialist Labor, twice the USSR State Prize laureate N. N. Polikarpov is dedicated. Series Engineering: Technology, Equipment, Moscow

    Google Scholar 

  12. Fedorenko MA, Bondarenko JA, Sanina TM (2018) Influence of forces acting on side of machine on precision machining of large diameter holes. In the collection. In: IOP conference series: materials science and engineering 11. CEP. International conference on mechanical engineering, automation and control systems 2017—processing equipment, mechanical engineering processes and metals treatment, 042018

    Article  Google Scholar 

  13. Ambrosimov SK, Bondarenko YA, Vereshchaka AS et al (2016) Progressive machine building technologies, equipment and tools, vol 7. The Collective Monograph, Moscow

    Google Scholar 

  14. Bestuzheva OV, Fedorenko MA, Bondarenko YA (2016) Experimental study of the restoration of the surface of rotation of large-size parts of industrial equipment. Bull Belgorod State Technol Univ V.G Shukhov 11:122–127

    Google Scholar 

  15. Fedorenko MA, Bondarenko YA, Sanina TM, Markova OV (2015) A free machine for treatment of large-sized internal surfaces of cylindrical type. Eng Technol 11:27–28

    Google Scholar 

  16. Gorbatykh VV, Bondarenko YA (2014) Improvement of efficiency of repair and accuracy of installation of equipment under conditions of operation excluding disassembly of equipment in the collection: youth and knowledge—a guarantee of success. In: Collection of scientific papers of the international scientific and technical conference, pp 93–94

    Google Scholar 

  17. Sanina TM, Bondarenko YA, Fedorenko MA (2009) Machine for treatment of internal surfaces TSAPF pomolnyy mills patent for utility model. RUS Patent 89830. 25 Aug 2009

    Google Scholar 

  18. Fedopenko MA, Sanina TM, Bondarenko YA, Pogonin AA, Skhirtladze AG (2009) Removed understanding of functional bargeway agents repairs. Recov Mod 11:11–14

    Google Scholar 

  19. Bondarenko YA, Fedorenko MA (2003) Method for treating large shafts without their demontages patent for invention. RUS Patent 2242346. 05 May 2003

    Google Scholar 

  20. Bondarenko YA, Fedorenko MA (2003) Unruptated restoration of tapp mill pipes. Construct Mater 8:16

    Google Scholar 

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Correspondence to N. A. Maslennikov .

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Bondarenko, Y.A., Maslennikov, N.A., Mamchenkova, A.A. (2020). Researching the Influence of the Location Tool on the Treatment of Large Shafts Requiring Surface Shaping. In: Radionov, A., Kravchenko, O., Guzeev, V., Rozhdestvenskiy, Y. (eds) Proceedings of the 5th International Conference on Industrial Engineering (ICIE 2019). ICIE 2019. Lecture Notes in Mechanical Engineering. Springer, Cham. https://doi.org/10.1007/978-3-030-22063-1_113

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  • DOI: https://doi.org/10.1007/978-3-030-22063-1_113

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  • Print ISBN: 978-3-030-22062-4

  • Online ISBN: 978-3-030-22063-1

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