|

Mathematical Model of the Efficiency in Hybrid Laser Processing

Authors: Htet Aung Lin, Taksants M.V., Misurov A.I. Published: 19.06.2015
Published in issue: #3(102)/2015  

DOI: 10.18698/0236-3941-2015-3-71-79

 
Category: Mechanical Engineering and Machine Science | Chapter: Welding, Allied Processes Technologies  
Keywords: laser, efficiency, hybrid processing, hardening steel, mathematical model

The paper discusses the problem of limitations on using the powerful lasers in industry due to low laser power efficiency. It considers a combination of some thermal sources as a multiplier of the process. The object of the research is a hybrid laser thermal source.The authors estimate the efficiency by calculating the impact of hybrid processing parameters on the laser output power. The computer model created by the researchers from BMSTU and SPbSTU is used. The paper introduces a prediction model of the process efficiency developed on the basis of the regression analysis approach. Both the processing speed and the distance between the thermal sources are considered varied factors while the laser power efficiency is thought to be a response. The developed nonlinear mathematical model of dependence of the laser power efficiency on operating parameters during the hybrid laser process of hardening steel proves to be highly precise in predicting the results.

References

[1] Grigor’yants A.G., Shiganov I.N., Misyurov A.I. Ed. by Grigor’yants A.G. Tekhnologicheskie protsessy lazernoy obrabotki [Processes of Laser Treatment]. Moscow, MGTU im. N.E. Baumana Publ., 2008. 664p.

[2] Misyurov A.I., Smirnova N.A., Khtet Aung Lin. Laser Hybrid Welding Thin Sheet Hardening Steels. Beam Technologies & Laser Application. Proceedings of the VII International scientific and technical Conference. 18-21 September, 2012, Saint-Petersburg, Russia. Ed. by G. Turichin, Saint-Petersburg, SPbSPU, Publ., 2013, pp. 247-253.

[3] Misyurov A.I., Htet Aung Lin. Welding Features of Hardenable Steels by Laser Hybrid Heat Sources. Vestn. Mosk. Gos. Tekh. Univ. im. N.E. Baumana, Mashinostr, Spetsvyp. Laser Processes in Mechanical Engineering [Herald of the Bauman Moscow State Tech. Univ., Mech. Eng., Spec. Iss.], 2012, no. 6, pp. 78-84 (in Russ.).

[4] Alekseev G.M., Turichin G.A., Misyurov A.I. Prospects of Laser-Light Technology Application. Avtomaticheskaya svarka [Automatic Welding], 2005, no. 5, pp. 5-11 (in Russ.).

[5] Bure V.M., Parilina E.M. Teoriya veroyatnostey i matematicheskaya statistika [Probability Theory and Mathematical Statistics]. S. Petersburg, Lan’ Publ., 2013. 415 p.

[6] Goryaninov V.B., Pavlov I.V., Krishchenko G.M. Matematicheskaya statistika. Ser. Matematika v tekhnicheskom universitete. Vyp. XVII [Mathematical Statistics. Series Mathematics at the Technical University Issue XVII]. Moscow, MGTU im. N.E. Baumana Publ., 2002. 424 p.