New technologies of laser processing

Subject and purpose. Currently, gas, solid-state, and fiber lasers are used to process materials in the aviation industry. For the thermal treatment of steels, gas CO2 lasers with a capacity of more than 1 kW used, which are reliable in operation but have high cost and low efficiency. There are no r...

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Main Authors: Ольга Валентинівна Афанасьєва, Наталія Олексіївна Лалазарова, Олена Георгіївна Попова
Format: Article
Language:English
Published: National Aerospace University «Kharkiv Aviation Institute» 2021-04-01
Series:Авіаційно-космічна техніка та технологія
Subjects:
Online Access:http://nti.khai.edu/ojs/index.php/aktt/article/view/1369
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spelling doaj-44433c05d49249cfae390b2f89ed0cb32021-04-28T09:45:53ZengNational Aerospace University «Kharkiv Aviation Institute»Авіаційно-космічна техніка та технологія1727-73372663-22172021-04-0102596510.32620/aktt.2021.2.071385New technologies of laser processingОльга Валентинівна Афанасьєва0Наталія Олексіївна Лалазарова1Олена Георгіївна Попова2Харківський національний університет радіоелектроніки, ХарківХарківський національний автомобільно-дорожній університет, ХарківНаціональний аерокосмічний університет ім. М. Є. Жуковського «Харківський авіаційний інститут», ХарківSubject and purpose. Currently, gas, solid-state, and fiber lasers are used to process materials in the aviation industry. For the thermal treatment of steels, gas CO2 lasers with a capacity of more than 1 kW used, which are reliable in operation but have high cost and low efficiency. There are no results on the use of low-power (up to 20 W) pulsed-mode lasers for surface hardening of steel products. The purpose of this work is to determine the modes of surface hardening of products from carbon and alloy steels using low-power solid-state pulsed YAG lasers. Methodology. For laser hardening, a 5 W solid-state YAG laser was used (diode pumping, radiation wavelength λ = 1,064 μm, pulse mode). The use of a nonlinear crystal made it possible to obtain UV radiation with λ = 0,355 μm (third harmonic). The following modes were investigated: processing with single pulses (duration 0,1...0,4 ms) and multi-pulse processing with short (30...70 ms) pulses. The scanning speed was 8...2 mm/s. The energy in the pulse was determined by the photoelectric method. Thermal hardening was performed on the following steels: У12, P6M5. The possibility of UV radiation hardening was evaluated on steel 20, 45, У12, and ШХ15. Findings. The optimum values of pulse duration for maximum hardness in laser hardening of the investigated steels. With multi-pulse treatment of steels, the pulse duration is shorter than with single-pulse treatment, the hardening intensity is higher, and the quality of the processed surface is better. Single-pulse and multi-pulse processing are accompanied by partial melting of the surface of steel products, which does not allow it to be used in cases where a high quality of the surface is required. Laser hardening of steel by ultraviolet radiation is not accompanied by melting. Conclusion. For surface hardening of products, where partial melting of the surface is possible, low-power lasers in pulse mode can be used. Laser hardening by ultraviolet radiation is a promising direction for thermal hardening of steels, which allows maintaining the original quality of the surface layer. Thermal hardening with low-power lasers can be effective for small-sized areas of the processed parts of the fuel equipment of aircraft engines, friction elements, and, especially, the tool is small.http://nti.khai.edu/ojs/index.php/aktt/article/view/1369твердотільний лазер малої потужностіодноімпульсна і багатоімпульсна обробкатривалість імпульсуповерхневе гартуваннясталь
collection DOAJ
language English
format Article
sources DOAJ
author Ольга Валентинівна Афанасьєва
Наталія Олексіївна Лалазарова
Олена Георгіївна Попова
spellingShingle Ольга Валентинівна Афанасьєва
Наталія Олексіївна Лалазарова
Олена Георгіївна Попова
New technologies of laser processing
Авіаційно-космічна техніка та технологія
твердотільний лазер малої потужності
одноімпульсна і багатоімпульсна обробка
тривалість імпульсу
поверхневе гартування
сталь
author_facet Ольга Валентинівна Афанасьєва
Наталія Олексіївна Лалазарова
Олена Георгіївна Попова
author_sort Ольга Валентинівна Афанасьєва
title New technologies of laser processing
title_short New technologies of laser processing
title_full New technologies of laser processing
title_fullStr New technologies of laser processing
title_full_unstemmed New technologies of laser processing
title_sort new technologies of laser processing
publisher National Aerospace University «Kharkiv Aviation Institute»
series Авіаційно-космічна техніка та технологія
issn 1727-7337
2663-2217
publishDate 2021-04-01
description Subject and purpose. Currently, gas, solid-state, and fiber lasers are used to process materials in the aviation industry. For the thermal treatment of steels, gas CO2 lasers with a capacity of more than 1 kW used, which are reliable in operation but have high cost and low efficiency. There are no results on the use of low-power (up to 20 W) pulsed-mode lasers for surface hardening of steel products. The purpose of this work is to determine the modes of surface hardening of products from carbon and alloy steels using low-power solid-state pulsed YAG lasers. Methodology. For laser hardening, a 5 W solid-state YAG laser was used (diode pumping, radiation wavelength λ = 1,064 μm, pulse mode). The use of a nonlinear crystal made it possible to obtain UV radiation with λ = 0,355 μm (third harmonic). The following modes were investigated: processing with single pulses (duration 0,1...0,4 ms) and multi-pulse processing with short (30...70 ms) pulses. The scanning speed was 8...2 mm/s. The energy in the pulse was determined by the photoelectric method. Thermal hardening was performed on the following steels: У12, P6M5. The possibility of UV radiation hardening was evaluated on steel 20, 45, У12, and ШХ15. Findings. The optimum values of pulse duration for maximum hardness in laser hardening of the investigated steels. With multi-pulse treatment of steels, the pulse duration is shorter than with single-pulse treatment, the hardening intensity is higher, and the quality of the processed surface is better. Single-pulse and multi-pulse processing are accompanied by partial melting of the surface of steel products, which does not allow it to be used in cases where a high quality of the surface is required. Laser hardening of steel by ultraviolet radiation is not accompanied by melting. Conclusion. For surface hardening of products, where partial melting of the surface is possible, low-power lasers in pulse mode can be used. Laser hardening by ultraviolet radiation is a promising direction for thermal hardening of steels, which allows maintaining the original quality of the surface layer. Thermal hardening with low-power lasers can be effective for small-sized areas of the processed parts of the fuel equipment of aircraft engines, friction elements, and, especially, the tool is small.
topic твердотільний лазер малої потужності
одноімпульсна і багатоімпульсна обробка
тривалість імпульсу
поверхневе гартування
сталь
url http://nti.khai.edu/ojs/index.php/aktt/article/view/1369
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