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Proceedings of the National Academy of Sciences of Belarus. Physical-technical series

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“INDUSTRY 4.0”: FROM INFORMATION AND COMMUNICATION AND ADDITIVE TECHNOLOGIES TO SELF-REPRODUCTION OF MACHINES AND ORGANISMS

Abstract

An analysis of the state and prospects of development of additive technologies for computer-aided manufacturing has been carried out. This analysis allowed demonstrating a new paradigm of computer-aided manufacturing evolution – the transition to self-reproduction of machines and their parts, as well as organisms. A diagram of logical connections in the process of additive manufacturing has been proposed, which is a state machine that can be used to build a 3D printer enabling to “grow” products of complex shapes and structures, as well as for additive synthesis of its composite material. Prospective approach, considering additive methods such as synergetic energy technology, ensuring the self-organization of surface phenomena in the formation of structures of layers of different materials has been developed. It is proposed on the basis of the approach to choose sources of energy and material defining discrete or continuous technological environment of the additive processing method. Conditions for stabilization of the thickness of formed layers associated with processes of self-organization of surface phenomena and design features of products have been discussed.

About the Authors

P. A. Vitiaz
Presidium of the National Academy of Sciences of Belarus; Joint Institute of Mechanical Engineering of the National Academy of Sciences of Belarus
Belarus
Academician of the National Academy of Sciences of Belarus, D. Sc. (Engineering), Professor, Head of Academy Staff of the National Academy of Sciences of Belarus; Head Researcher


M. L. Kheifetz
Presidium of the National Academy of Sciences of Belarus; State Scientific and Production Association “Center” of the National Academy of Sciences of Belarus
Belarus

D. Sc. (Engineering), Professor, Deputy Academician-Secretary of the Department of Physical-Engineering Sciences of the National Academy of Sciences of Belarus;

Head Researcher



S. A. Chizhik
Presidium of the National Academy of Sciences of Belarus; A. V. Luikov Heat and Mass Transfer Institute of the National Academy of Sciences of Belarus
Belarus

Academician of the National Academy of Sciences of Belarus, D. Sc. (Engineering), Professor, Vice-Chairman of the Presidium of the National Academy of Sciences of Belarus;

Head Researcher



References

1. Courant R. (et al.). Mathematics in the Modern World. Moscow, Mir Publ., 1967. 208 p. (in Russian).

2. Wiener N. Cybernetics or control and communication in a living and a machine. Moscow, Sovetskoe radio Publ., 1958. 296 p. (in Russian).

3. Kuzin L. N. Fundamentals of cybernetics. Volume 2. Fundamentals of cybernetic models. Moskow, Energia Publ., 1979. 584 p. (in Russian).

4. von Neumann J. Theory of Self-Reproducing Automata. University of Illinois Press, Urbana, 1966. 408 p.

5. Sigorskii V. P. Mathematical apparatus of an engineer. Kiev, Engineering Publ., 1977. 768 p. (in Russian).

6. Golubev O. P., Kuchta S. V., Mrochek Zh. A., Svirskii D. N., Soukhinenko B. N., Kheifetz M. L. Advanced technologies of engineering production. Novopolotsk, Polotsk State University, 2007. 204 p. (in Russian).

7. Isii T., Simoyama I., Inoue Kh. Mechatronics. Moscow, Mir Publ., 1988. 314 p. (in Russian).

8. Bradley D. A. Mechatronics – Electronics in Products and Processes. London, Chapman & Hall, 1993. 376 p.

9. Delchambre A. Computer-aided Assembly Planning. London, Chapman & Hall, 1992. 276 p. Doi: 10.1007/978-94-011-2322-8

10. Sirotkin O. Technological appearance of Russia at the turn of the XXI century. Economist, 1998, no. 4, pp. 3–9 (in Russian).

11. Al’perovich T. A., Barabanov V. V., Davydov A. N., Sergeev S. N., Sudov E. V., Cherpakov B. I. Computerized integrated production and CALS-technologies in mechanical engineering. Moscow, VIMI Publ., 1999. 512 p. (in Russian).

12. Bratukhin A. G. (ed.), Davydov Yu. V., Eliseev Yu. S. CALS (Continuous Acquisition and Life cycle Support) in aircraft construction. Moscow, Moscow Aviation Institute, 2000. 304 p. (in Russian).

13. Gibson I., Rosen D., Stuker B. Additive Manufacturing Technologies: 3D Printing, Raid Prototyping, and Direct Digital Manufacturing. N. Y., Springer, 2015. 498 p.

14. Zlenko M. A, Popovich A. A, Mutylina I. N. Additive technologies in mechanical engineering. Sankt Petersburg, Publ. House of Polytechnic. University, 2013. 222 p. (in Russian).

15. Additive Manufacturing – Statista Dussier. N. Y., Statista Inc., 2015. 196 p.

16. Ragimova S. (ed.). Chronicle of industrial revolutions: From the steam engine to digital production. Who will live on the Internet globe in 100 years. Rostelecom Professional, 2016, no. 3 (15), pp. 16–17, 24–29 (in Russian).

17. Kheifetz M. L. Additive sinergotechnologies of layer-by-layer synthesis of articles made of composite materials when exposed to energy flows. Naukoemkie tekhnologii v mashinostroenii [Science intensive technologies in mechanical engineering], 2016, no. 4 (58), pp. 3–9 (in Russian).

18. Chizhik S. A., Kheifetz M. L. Sinergotehnologies of layer-by-layer synthesis of products. Nauka i innovatsii [Science and Innovations], 2016, no. 2 (156), pp. 13–16 (in Russian).

19. Vityaz P. A., Ilyushchenko A. F., Kheifetz M. L. Rapid prototyping and manufacture of articles with complex shapes made of composite materials. Naukoemkie tekhnologii v mashinostroenii [Science intensive technologies in mechanical engineering], 2011, no. 2, pp. 3–8 (in Russian).

20. Chizhik S. A., Kheifetz M. L., Filatov S. A. Prospects for development of technological systems for additive synthesis of composite materials and products shaping. Mechanika mashin, mechanizmov i materialov [Mechanics of Machines, Mechanisms and Materials], 2014, no. 4 (29), pp. 68–74 (in Russian).

21. Kheifetz M. L. Technological methods of increasing the productivity and quality of formation of surface layers of articles. Tekhnologicheskoe upravlenie kachestvom poverkhnosti detalei : sb. nauch. tr. [Technological process of quality control of surfaces of parts: a collection of scientific works]. Kiev, ATM Ukraine, 1998, pp. 42–50 (in Russian).

22. Kheifetz M. L. Models and algorithms for production of articles without the use of form-building equipment. Vestsi Natsyyanal’nai akademii navuk Belarusi. Seryya fizika-technichnych navuk [Proceedings of the National Academy of Sciences of Belarus. Physical-technical series], 2001, no. 2, pp. 59–62 (in Russian).

23. Kheifets M. L. Formation of materials properties at layer-by-layer synthesis of components. Novopolotsk, Polotsk State University, 2001. 156 p. (in Russian).

24. Akulovich L. M., Anoshko A. P., Zeveleva E. Z., Kheifets M. L. (ed.), Chemisov B. P. (ed.). Intellectual production: state and prospects. Novopolotsk, Polotsk State University, 2002. 268 p. (in Russian).

25. Rusetskii A. M. (ed.). Theoretical bases of technological systems designing. Minsk, Belaruskaya Navuka Publ., 2012. 239 p. (in Russian).

26. Alferov Zh. I. The history and future of semiconductor heterostructures. Semiconductors, 1998, vol. 32, no. 1, pp. 1–14. Doi: 10.1134/1.1187350

27. Kheifetz M. L. Design process of combined processing. Moskow, Mashinostroenie Publ., 2005. 272 p. (in Russian).

28. Kheifetz M. L. The analysis of algorithms of products manufacturing according to the models of von Neumann’s self-reproduction. Doklady Natsional’noi akademii nauk Belarusi [Reports of the National Academy of Sciences of Belarus], 2001, vol. 45, no. 5, pp. 119–122 (in Russian).

29. Dorozhkin N. N., Mironov V. V., Vereshchagin V. A., Kot A. A. Electrophysical methods for obtaining coatings from metal powders. Riga, Zinatne Publ., 1985. 131 p. (in Russian).

30. Tkachev V. N., Fishteyn B. M., Kozintsev N. V. Induction surfacing of hard alloys. Moskow, Mashinostroenie Publ., 1970. 184 p. (in Russian).

31. Vityaz P. A., Ivashko V. S., Manoilo E. D. The theory and practice of flame spraying. Minsk, Nauka i technika Publ., 1993. 296 p. (in Russian).

32. Kheifetz M. L., Akulovich L. M., Mrochek Zh. A., Zeveleva E. Z. Electrophysical and electrochemical methods of materials processing. Novopolotsk, Polotsk State University, 2012. 292 p. (in Russian).

33. Eidelman E. D. Excitation of electric instability by heating. Physics-Uspekhi, 1995, vol. 38, no. 11, pp. 1231–1246. Doi: 10.1070/pu1995v038n11abeh000118

34. Kheifetz M. L., Kozhuro L. M, Mrochek Zh. A. Self-organization processes in the formation of surfaces. Gomel, V. A. Belyi Metal-Polymer Research Institute of the National Academy of Sciences of Belarus, 1999. 276 p. (in Russian).

35. Ivanova V. S., Balankin A. C., Bunin I. Zh., Oksogoev A. A. Synergetics and fractals in material science. Moscow, Nauka Publ., 1994. 383 p. (in Russian).

36. Chizhik S. A., Kheifetz M. L., Filatov S. A. Technological barriers at high-exposure impacts related to the layering synthesis and processing of materials. Vestsi Natsyyanal’nai akademii navuk Belarusi. Seryya fizika-technichnych navuk [Proceedings of the National Academy of Sciences of Belarus. Physical-technical series], 2015, no. 3, pp. 107–113 (in Russian).

37. Loitsianskii L. G. Fluid mechanics. Moscow, Nauka Publ., 1987. 840 p. (in Russian).

38. Druzhinin V. V., Cantorov D. S. Problems of Systemology. Moscow, Soviet Radio Publ., 1976. 296 p. (in Russian).

39. Tsetlin M. L. Investigations on the theory of automata and modeling of biological systems. Moscow, Nauka Publ., 1969. 368 p. (in Russian).

40. Smolyaninov V. V. Mathematical models of biological tissues. Moscow, Nauka Publ., 1980. 368 p. (in Russian).


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ISSN 1561-8358 (Print)
ISSN 2524-244X (Online)