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Mechanics of chip formation in cutting

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Abstract

The stress–strain state in chip is investigated by the finite-element method. In addition, the cutting process and the mechanics of chip formation are studied experimentally over the whole temperature range of metal cutting.

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References

  1. Grigor’ev, S.N., Metody povysheniya stoikosti rezhushchego instrumenta: uchebnik dlya studentov vuzov (Strength Improvement of Cutting Tool: Manual for Higher Education Students), Moscow: Mashinostroenie, 2011.

    Google Scholar 

  2. Artamonov, E.V., Vasilega, D.S., Ostapenko, M.S., et al., Rabotosposobnost’ instrumentov i fiziko-mekhanicheskie kharakteristiki instrumental’nykh tverdykh splavov i obrabatyvaemykh materialov: monografiya (Efficiency of Tools and Physical-Mechanical Characteristics of Hard Alloys for Tools and Processed Materials: Monograph), Uteshev, M.Kh., Ed., Tyumen: Vektor Buk, 2008.

  3. Poduraev, V.N., Rezanie trudnoobrabatyvaemykh materialov: uchebnoe posobie dlya vuzov (Cutting of Hard Materials: Manual for Higher Education Institutions), Moscow: Vysshaya Shkola, 1974.

    Google Scholar 

  4. Artamonov, E.V. and Vasil’ev, D.V., Determining the optimal cutting speed in turning by composite cutters on the basis of the chip, Russ. Eng. Res., 2014, vol. 34, no. 6, pp. 404–405.

    Article  Google Scholar 

  5. Poletika, M.F., Teoriya rezaniya. Chast’ 1. Mekhanika protsessa rezaniya. Uchebnoe posobie (The Cutting Theory, Part 1: Mechanics of Cutting: Manual), Tomsk: Tomsk. Politekh. Univ., 2001.

    Google Scholar 

  6. Bobrov, V.F. and Sedel’nikov, A.I., Specific formation of joint and element chips at the high cutting speed, Vestn. Mashinostr., 1976, no. 7, pp. 61–66.

    Google Scholar 

  7. Vasin, S.A., Vereshchaka, A.S., and Kushner, V.S., Rezanie materialov: Termomekhanicheskii podkhod k sisteme vzaimosvyazei pri rezanii: uchebnik dlya tekhnicheskikh vuzov (Cutting of Materials: Thermomechanical Approach to the Interaction Systems during Cutting: Manual for Technical Higher Education Institutions), Moscow: Mosk. Gos. Tekh. Univ. im. N.E. Baumana, 2001.

    Google Scholar 

  8. Krivoukhov, V.A., Petrukha, P.G., Brushtein, B.E., et al., Rezanie konstruktsionnykh materialov: rezhushchie instrumenty i stanki (Cutting of Construction Materials: Cutting Tools and Machines), Petrukha, P.G., Ed., Moscow: Mashinostroenie, 1974.

  9. Lasukow, A.A., Chazov, P.A., and Barsuk, A.V., Investigation on the elemental chip formation process in hard-to-machine material cutting, Appl. Mech. Mater., 2014, vol. 682, pp. 504–509.

    Article  Google Scholar 

  10. Artamonov E.V. and Kireev V.V. Effectiveness of cutting by hoods with replaceable hard-alloy plates, Russ. Eng. Res., 2014, vol. 34, no. 7, pp. 473–474.

    Article  Google Scholar 

  11. Yamnikov, A.S. and Myagkov, Yu.V., Determination of the minimum specific normal force required for cutting start, Izv. Vyssh. Uchebn. Zaved., Mashinostr., 1979, no. 12, p.111.

    Google Scholar 

  12. Drachev, A.O., Drachev, O.I., Taranenko, G.V., et al., Thermopower treatment of stepped axisymmetric parts, Mater. mezhdunarodnoi nauchno-tekh. konferentsii “Avtomatizatsiya: problemy, idei, resheniya” (Proc. Int. Sci.-Tech. Conf. “Automation: Problems, Concepts, and Solutions”), Sevastopol: Sevastop. Nats. Tekh. Univ., 2009, pp. 18–21.

    Google Scholar 

  13. Pustovalov, D.A., Mokritskii, B.Ya., Shpilev, A.M., Vysotskii, V.V., Sablin, P.A., and Prikhodchenko, O.V., Efficiency of metal-cutting tool for processing of materials used in chemical and oil and gas machine engineering, Vestn. Mashinostr., 2013, no. 6, pp. 46–52.

    Google Scholar 

  14. Petrakov, Yu.V. and Drachev, O.I., Modelirovanie protsessov rezaniya: uchebnoe posobie (Modeling of Cutting Processes: Manual), Staryi Oskol: TNT, 2011.

    Google Scholar 

  15. Artamonov, E.V., Pomigalova, T.E., and Uteshev, M.Kh., Raschet i proektirovanie smennykh rezhushchikh platin i sbornykh instrumentov (Design of Replaceable Polyhedral Plates and Composite Tools), Tyumen: Tyumen. Gos. Neftegaz. Univ., 2011.

    Google Scholar 

  16. Okoshi, M., Research on the cutting force, in Scientific Papers of the Institute of Physical and Chemical Research, Tokyo, 1930, vol. 14, pp. 193–225.

    Google Scholar 

  17. Rozenberg, Yu.A., Analytical evaluation of the deformation degree of the chip metal during cutting, Vestn. Mashinostr., 2001, no. 3, pp. 34–38.

    Google Scholar 

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Correspondence to E. V. Artamonov.

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Original Russian Text © E.V. Artamonov, D.V. Vasil’ev, V.V. Kireev, M.Kh. Uteshev, 2016, published in STIN, 2016, No. 11, pp. 24–28.

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Artamonov, E.V., Vasil’ev, D.V., Kireev, V.V. et al. Mechanics of chip formation in cutting. Russ. Engin. Res. 37, 450–454 (2017). https://doi.org/10.3103/S1068798X17050069

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  • DOI: https://doi.org/10.3103/S1068798X17050069

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