

The Possibility of High-Speed Laser Glass Cutting
https://doi.org/10.15518/isjaee.2018.16-18.088-097
Abstract
In recent years, the appearance of high-power fiber lasers, more efficient and easier to operate than other types of lasers, made it necessary to conduct systematic studies and develop a technology for cutting glass by the method of controlled thermal splitting. The paper considers the question of the possibility of high-speed cutting of glass by modern lasers with a power of up to several tens of kilowatts in the near-IR radiation range. In order to achieve the goal set in the work, the problem of determining the field of elastic stresses arising in a glass plate when it is heated by laser radiation has been solved. The method of investigation is based on the theory of thermoelasticity.
We have proposed a mathematical model for calculating the three-dimensional temperature distribution and elastic stresses caused by the irradiation of the glass by a moving laser beam and have presented the results of numerical simulation of temperature fields and elastic stress profiles at different irradiation spot velocities. At high radiation powers, the maximum achievable cutting speed of glass is shown to be directly proportional to the power. The data on the speed of Bohr glass at low radiation powers (less than 400 W) available in the literature we have extrapolated to a high power (up to several tens of kilowatts). The investigation shows that the cutting speed can reach 70 cm / s at a laser radiation power of 20 kW. For cutting large-sized glass sheets in mass production, the fiber ytterbium lasers having a wavelength of 1.065 m are recommended. These lasers meet the requirements for power level, irradiation stability and service life. In addition, they have the ability to transport radiation through a fiber optic cable and the ability to automatically control the spatial location of the radiation spot. The results obtained can be used to develop new technologies for cutting glass on industrial lines for the production of float glass, in the process of cutting glass sheets and cutting 3D articles. The method of laser controlled thermal splitting, in comparison with other methods of laser cutting glass, is more efficient and stable, and also has a much wider range of applications, because allows increasing in several times the thickness of the divided glass.About the Authors
V. V. BuchanovRussian Federation
Vladimir Buchanov - Ph.D. in Physics and Mathematics.
7/5 Odoevsky passage, Moscow, 117574, tel.: +7 (985) 813 70 25
M. A. Kazaryan
Russian Federation
Mishik Kazaryan - D.Sc. in Physics and Mathematics, Leading Researcher, P.N. Lebedev Physical Institute of RAS.
53 Leninsky Av., Moscow, 119991, tel.: +7 (499) 135 42 64
E. A. Kuznetsova
Russian Federation
Ekaterina Kuznetsova - Ph.D. in Physics and Mathematics, Associate Professor, the Mytishchi branch of the Bauman Moscow State Technical University.
1 First Institutskaya St., Mytischi, Moscow region, 141005, tel.:+7 (495) 583-64-90
V. I. Revenko
Russian Federation
Valery Revenko - Ph.D. in Physics and Mathematics, Senior Researcher.
5/29 Krzhizhanovsky St., Moscow, 117218, Russia tel.: +7 (499) 125 39 21
V. I. Sachkov
Russian Federation
Victor Sachkov - D.Sc. in Chemistry, Head of the Laboratory, Siberian Physical-Technical Institute of Tomsk State University.
1 Novosobornaya Sq., Tomsk, 634050, tel.: +7 (3822) 53 35 77
References
1. Machulka G.A. Laser glass processing (Lazernaya obrabotka stekla). Moscow: Sovetskoe radio Publ., 1979; 135 p. (in Russ.).
2. Grigor'yants A.G., Sokolov A.A. Laser treatment of non-metallic materials (Lazernaya obrabotka nemetallicheskikh materialov). Moscow: Vysshaya shkola Publ., 1988; 192 p. (in Russ.).
3. Chul G.K. Laser cutting of hot glass. Amer. Ceram. Soc. Bull.,1975;54(5):514–518.
4. Lumley R.M. Controlled separation of brittlo materials used a laser. J. of the Amer. Cer. Soc., 1969;48(9):850.
5. Higuchi T., Miyazama T., Joshida H. Application of laser to drilling and cutting. Mitsubishi Denki, 1971;45(10):1298.
6. Zhimalov A.B., Solinov V.F., Kondratenko V.S., Kaplina T.V. Laser cutting of float glass during production. Glass and ceramics, 2006;63(9–10):319–321.
7. Solinov V.F., Kondratenko V.S., Braude V.M. Cutting of silicate sheet glass by thermal cracking (Raskroi listovogo silikatnogo stekla metodom termoraskalyvaniya). Tekhnika, ekonomika, informatsiya. Ser. Tekhnika, 1982;(6–7):47 (in Russ.).
8. Hermanns C. Laser cutting of glass. Proc. SPIE, 2000;4102:(219–226).
9. Kang H.S. Hong S.K., Oh S.C., Choi J.Y., and Song M.G. A study of cutting glass by laser. Proc. SPIE, 2002;4426:367–370.
10. Kondratenko V.S. Laser driven thermal cracking of brittle materials (Lazernoe upravlyaemoe termoraskalyvanie khrupkikh materialov). Moscow: MGUPI Publ., 2007, 191 p. (in Russ.).
11. Solinov E.F., Solinov V.F., Buchanov V.V., Kustov M.E., Murav’ev E.N., Revenko V.I. Application of laser technology for cutting glass articles. Glass and Ceramics, 2015;71(9–10):306–308.
12. Buchanov V.V., Murav’ev E.N., Revenko V.I., Kazaryan M.A. Light–indused glass cutting. Bulletin of the Lebedev Physics Institute, 2017;44(9):263–265.
13. Belkin A.M. Laser cutting refractory glasses by a laser beam (Lazernaya rezka tugoplavkikh stekol luchom OKG). Elektronnaya tekhnika. Ser. 3. Gazorazryadnye pribory, 1969;4:37 (in Russ.).
14. Belkin A.M. Pruning of quartz articles be a laser beam (Obrezka kvartsevykh izdelii luchom lazera). Elektronnaya tekhnika. Ser. 4. Elektrovakuumnye i gazorazryadnye pribory, 1977;5:103 (in Russ.).
15. Machulka G.A., Gur'yanov V.M., Muratova L.P. Glass cutting with laser beam (Rezka stekla lazernym luchom). Steklo i keramika, 1972;10:10 (in Russ.).
16. Webster J.M. Laser in the glass industry. Glass, 1974;51(10):337.
17. A Guide to the Laser, ed. D. Fishlock. McDonald, London, 1967; 163 p.
18. Babenko V.P. Gas-Jet laser cutting (review). Soviet Journal of Quantum Electronics, 1973;2(5):399.
19. Rykalin N.N., Uglov A.A., Kokora A.N. Laser processing of materials (Lazernaya obrabotka materialov). Moscow: Mashinostroenie Publ., 1975; 295 p. (in Russ.). [
20. Redi D. The action of high-power laser radiation (Deistvie moshchnogo lazernogo izlucheniya). Moscow: Mir Publ., 1974; 468 p. (in Russ.).
21. Boroda V.I., Vartan'yants A.Ts., Karpov H.H. Thermal splitting of glass tubes with laser radiation (Termoraskalyvanie steklyannykh trubok lazernym izlucheniem). Elektronnaya promyshlennost, 1976;1:59– 63 (in Russ.).
22. Bol'shov V.F., Gur'yanov V.M., Machulka G.A., Muratova L.P. Laser unit for cutting a glass beam. Soviet Journal of Quantum Electronics, 1972;1(6):625.
23. Parfenov B.A., Vydrina V.S., Zakharov V.G. et al. “Kvant-20” laser cutting machine for glass cutting (Lazernaya ustanovka “Kvant-20” dlya rezki stekla). Elektronnaya tekhnika. Ser. 11. Lazernaya tekhnika i optoelektronika, 1979;1(7):11 (in Russ.).
24. Belousov E.K., Kondratenko V.S., Machulka G.A., Chuiko V.V. Controllable thermal splitting of glass by means of laser radiation (Upravlyaemoe termoraskalyvanie stekla s pomoshch'yu lazernogo izlucheniya). Elektronnaya promyshlennost, 1978;9:65 (in Russ.).
25. Higuchi T., Miyazama T., Joshida H. Application of laser to drilling and cutting. Mitsubishi Denki, 1971;45(10):1298.
26. Solinov V.F., Kondratenko V.S., Braude V.M. Cutting of silicate sheet glass by thermal cracking (Raskroi listovogo silikatnogo stekla metodom termoraskalyvaniya). Tekhnika, ekonomika, informatsiya. Ser. Tekhnika, 1982;(6–7):47 (in Russ.).
27. Kondratenko V.S. Research and development of the process of cutting glass by the method of laser controlled thermal splitting (Issledovanie i razrabotka protsessa rezki stekla metodom lazernogo upravlyaemogo termoraskalyvaniya: Avtoref. kand. dis. tekh.nauk). Moscow, 1983 (in Russ.).
28. Kovalenko A.D. Basics of thermoelasticity (Osnovy termouprugosti). Kiev: Naukova dumka Publ., 1970, 306 p. (in Russ.).
29. Malov I.E. Development of the technology of controllable thermal splitting of sheet glass by solid-state laser radiation: Ph.D. thesis (Razrabotka tekhnologii upravlyaemogo termoraskalyvniya listovogo stekla izlucheniem tverdotel'nogo lazera: Dis. kand. tekh. Nauk). Moscow, 2000 (in Russ.).
30. Samarskii A.A. Economical difference schemes for a hyperbolic system of equations with mixed derivatives and their application to the equations of the theory of elasticity (Ekonomichnye raznostnye skhemy dlya giperbolicheskoi sistemy uravnenii so smeshannnymi proizvodnymi i ikh primenenie dlya uravnenii teorii uprugosti). Zhurnal vychislitel'noi matematiki i matematicheskoi fiziki, 1965;5(1):34 (in Russ.).
Review
For citations:
Buchanov V.V., Kazaryan M.A., Kuznetsova E.A., Revenko V.I., Sachkov V.I. The Possibility of High-Speed Laser Glass Cutting. Alternative Energy and Ecology (ISJAEE). 2018;(16-18):88-97. (In Russ.) https://doi.org/10.15518/isjaee.2018.16-18.088-097